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1 ambient temperature condition
Техника: условия окружающей температурыУниверсальный англо-русский словарь > ambient temperature condition
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2 temperature
1) температура
2) температурный
– above-zero temperature
– absolute temperature
– air-blast temperature
– ambient temperature
– annealing temperature
– apparent temperature
– at temperature
– background temperature
– be temperature dependent
– brightness temperature
– brittle temperature
– bulk temperature
– calendering temperature
– casting temperature
– Celsius temperature
– charging temperature
– cloud temperature
– coagulation temperature
– color temperature
– combustion temperature
– constant temperature
– control temperature
– cryogenic temperature
– Curie temperature
– Debye temperature
– degeneracy temperature
– dimensionless temperature
– dry-bulb temperature
– dyeing temperature
– elevated temperature
– equilibrium temperature
– eutectic temperature
– final temperature
– finishing temperature
– flame temperature
– flow temperature
– forging temperature
– free-flowing temperature
– freezing temperature
– fusion temperature
– gelatinization temperature
– glass-transition temperature
– hardening temperature
– hold temperature
– ignition temperature
– intake temperature
– ion temperature
– Kelvin temperature
– lethal temperature
– limiting temperature
– lining temperature
– liquefaction temperature
– liquid-nitrogen temperature
– liquidus temperature
– melting temperature
– molding temperature
– Neel temperature
– noise temperature
– note temperature
– outlet temperature
– point temperature
– polymerization temperature
– pressing temperature
– radiation temperature
– radio temperature
– reaction temperature
– recrystallization temperature
– reduced temperature
– reduction temperature
– reference temperature
– reheat temperature
– representative temperature
– rolling temperature
– room temperature
– saturation temperature
– setting temperature
– sintering temperature
– skin-friction temperature
– softening temperature
– soldering temperature
– solidification temperature
– stagnation temperature
– storage temperature
– stratification of temperature
– subfreezing temperature
– sublimation temperature
– subzero temperature
– superheat temperature
– surface temperature
– take temperature
– tap temperature
– temperature altitude
– temperature coefficient
– temperature colors
– temperature condition
– temperature conductivity
– temperature control
– temperature derating
– temperature drop
– temperature falls
– temperature gradient
– temperature indicator
– temperature inversion
– temperature profile
– temperature range
– temperature rises
– temperature saturation
– temperature span
– temperature stress
– temperature tracking
– temperature triggering
– tempering temperature
– thermo-nuclear temperature
– total temperature
– transition temperature
– vaporization temperature
– wet-bulb temperature
– working temperature
– zero temperature
adiabatic wet-bulb temperature — <meteor.> температура смоченного термометра адиабатическая
automatic temperature regulator — <comput.> регулятор температуры автоматический
ductile-to-brittle transition temperature — температура вязко-хрупкого перехода
international temperature scale — <math.> шкала температур международная
piesoelectric temperature transducer — пьезокварцевый преобразователь
range of cyrogenic temperature — диапазон криогенных температур
resistance-type temperature detector — <tech.> термощуп
temperature independent core — температурно-независимый сердечник
thermostatic temperature control — ключевое термостатирование
valley on temperature curve — <phys.> сброс температуры
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3 condition
состояние; условие; режим ( работы) ; pl. условия; параметры; кондиционироватьbe in a hot condition — находиться под током, быть включенным [в рабочем состоянии]
c.g. condition — положение центра тяжести, центровка
high glide-slope standoff condition — условие [режим] полёта выше (заданной) глиссады
in solid IFR conditions — в условиях полного отсутствия видимости, в сплошных облаках
instrument (flight, meteorological) condition — условия полёта по приборам
low glide-slope standoff condition — условие [режим] полёта ниже (заданной) глиссады
simulated reentry heating conditions — имитированные [моделированные] условия нагрева при входе в атмосферу
simulated zero gravity conditions — имитированные [моделированные] условия невесомости
under no wind conditions — в штилевых условиях, в безветрие
visual flight rules weather conditions — метеорологические условия, допускающие полет с визуальной ориентировкой
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4 condition
1) условие2) состояние3) pl режим5) модифицировать; приспосабливать ( к новым условиям)6) править ( абразивный инструмент)•in a holding condition — в зафиксированном положении; в зажатом состоянии
in lightly manned conditions — в режиме малолюдной технологии, при минимальном обслуживании ( персоналом);
in the assembled condition — в сборе, в собранном виде
in unmanned conditions — в режиме безлюдной технологии, без обслуживания ( персоналом);
under generous volume conditions — в условиях обильной подачи (напр. СОЖ)
- acceptance conditionsunder speed conditions — при движении; при вращении
- accident conditions
- added-value condition
- alarm conditions
- ambient conditions
- application conditions
- as-received condition
- assembly conditions
- auxiliary condition
- backward condition
- best cutting conditions
- boundary conditions
- braking condition
- cavitation condition
- clamping conditions
- closed condition
- clutching condition
- condition of loading
- conditions of practical application
- consistancy conditions
- contact condition
- continuity condition
- control conditions
- controlled condition
- correcting condition
- cutting conditions
- declaration condition
- design condition
- desired condition
- disengaged condition
- distorted condition
- emergency conditions
- entry-to-cut conditions
- environmental conditions
- equilibrium condition
- ergonomically favorable working conditions
- erroneous conditions
- error condition
- exit-from-cut conditions
- fault condition
- final condition
- final controlled condition
- finishing conditions
- flushing conditions
- forbidden condition
- furnace annealing conditions
- grinding conditions
- half-floating condition
- heat equilibrium condition
- heavy roughing conditions
- heavy-load conditions
- initial condition
- instability condition
- interacted controlled conditions
- intermittent cutting conditions
- invertor conditions
- laser conditions
- laser-annealed regrowth conditions
- light load conditions
- limit and fit conditions
- limiting conditions
- load condition
- load ready condition
- loading conditions
- locked-in condition
- machine conditions
- machine operating load conditions
- machining conditions
- maximum material condition
- meshing condition
- mild condition
- minimum friction condition
- minimum operating condition
- motor load condition
- negative speed condition
- no-load condition
- noninteraction condition
- nonserviceable condition
- nonstandard condition
- normal conditions
- normal operating condition
- off-lead condition
- on/off condition
- open condition
- operated condition
- operating conditions
- operational conditions
- optimum condition
- optimum cutting conditions
- oscillating conditions
- out-of-balance condition
- out-of-control condition
- out-of-tolerance conditions
- overrunning condition
- periodicity conditions
- prefailure tool conditions
- processing conditions
- production conditions
- program stop condition
- quasi-equilibrium condition
- quasi-static load conditions
- quiescent conditions
- rated conditions
- rated operating conditions
- rated work conditions
- rated working conditions
- reference conditions
- release condition
- reset conditions
- rest condition
- reversing condition
- rigid condition
- roughing conditions
- runaway condition
- running conditions
- safety conditions
- sensed conditions
- service conditions
- serviceable condition
- shockless entrance condition
- shop conditions
- shop-floor conditions
- short-circuit conditions
- soft condition
- stability condition
- stabilized condition
- stale condition
- standard conditions
- starting condition
- static condition
- steady-state condition
- steady-state sliding conditions
- stick-slip condition
- strength condition
- temperature-humidity conditions
- temperature-humidity storage conditions
- terminal conditions
- test conditions
- testing conditions
- thermal conditions
- tool degradation condition
- tool fault condition
- traction condition
- transient condition
- transient-state condition
- unpredictable conditions
- unsettled condition
- unstability condition
- untoward condition
- workable condition
- working conditions
- workless condition
- worn tool conditionEnglish-Russian dictionary of mechanical engineering and automation > condition
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5 condition
1) условие || обусловливать2) состояние || поддерживать (приводить в) определённое состояние3) положение; ситуация4) мн. ч. режим5) мн. ч. параметры7) выдерживать (напр. древесину)8) горн. подвергать обработке реагентами перед флотацией9) текст. испытывать степень влажности•conditions beyond the experience — условия ( полёта), выходящие за рамки опыта ( пилота);-
abnormal operating conditions
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accident condition
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actual operating conditions
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added-value condition
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adjoint boundary condition
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adverse conditions
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airworthy condition
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alert condition
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ambient conditions
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anticipated operating conditions
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application conditions
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as-cast condition
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as-deposited condition
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as-drawn condition
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as-extruded condition
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as-forged condition
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as-received condition
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as-rolled condition
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as-welded condition
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asymmetrical conditions
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asynchronous condition
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atmospheric conditions
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average operating conditions
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balanced conditions
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beet cutting conditions
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boundary condition
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breaking conditions
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burning conditions
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busy condition
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characteristic condition
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chemistry conditions
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close conditions
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cold furnace condition
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compatibility condition
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condition of indeterminacy
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condition of static equilibrium
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conjugating boundary condition
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consistency condition
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contact conditions
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continuity condition
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continuous conditions
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controlled atmosphere conditions
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controlled conditions
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cost optimum condition
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crack arrest conditions
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crack extension conditions
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crew physical condition
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criticality conditions
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current yield condition
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cutting conditions
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deadlock condition
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debugging conditions
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Derichlet's boundary condition
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design conditions
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dirt load condition
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disabled condition
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docking initial contact conditions
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don't care condition
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downstream stagnation conditions
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dry-bulb conditions
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dust condition
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dyebath conditions
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dynamic conditions
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elliptic boundary condition
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emergency condition
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end fixity condition
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energized condition
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environmental conditions
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equilibrium condition
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equilibrium fuel burnup conditions
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equilibrium xenon conditions
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equipment-damaging condition
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error condition
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exception condition
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existence condition
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extreme conditions
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fault conditions
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faulty condition
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field condition
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firing conditions
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flight conditions
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flow conditions
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fracture arrest conditions
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fracture conditions
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free surface conditions
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freezing conditions
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friction boundary conditions
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frost buildup conditions
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full power equilibrium xenon conditions
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full-load conditions
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fusing condition
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gap condition
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general yielding conditions
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geological conditions
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geometric boundary condition
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geotechnical conditions
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governing conditions
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grinding conditions
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grip conditions
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hazardous weather conditions
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high-resistance fault conditions
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highresistance fault conditions
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homogeneous boundary conditions
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hostile conditions
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humid condition
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humidity conditions
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hunting conditions
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hygiene and sanitary conditions
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hypobaric conditions
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ice conditions
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ice-bound conditions
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icing conditions
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impact conditions
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induction condition
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initial condition
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in-lock condition
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in-pile conditions
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in-place conditions
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in-plane boundary conditions
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in-situ conditions
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instrument meteorological conditions
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jump conditions
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karstic conditions
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landing conditions
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limiting condition
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living conditions
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load conditions
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loading condition
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local condition
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local flow conditions
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logical condition
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lowest weather conditions
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low-light-level conditions
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machine conditions
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machining conditions
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making conditions
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managed conditions
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meteorological conditions
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mill conditions
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mining and geological conditions
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mixed-boundary conditions
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moding conditions
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moisture conditions
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motor load condition
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mutual-testing conditions
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natural boundary condition
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natural conditions
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near singing conditions
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necessary condition
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Newmann's boundary condition
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Newton's boundary condition
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no-load conditions
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nominal conditions
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normal conditions
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off condition
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off-design conditions
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off-peak conditions
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on condition
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on-peak conditions
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on-speed conditions
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open-conductor operating conditions
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operated condition
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operating condition
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operational conditions
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operation conditions
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out-of-balance condition
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out-of-round condition
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out-of-step conditions
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out-of-tolerance conditions
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overaged condition
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overheating conditions
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overload conditions
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overpoled condition
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overtempered condition
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oxidizing conditions
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peak load conditions
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periodicity condition
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permit conditions
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petrophysical conditions
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plane-strain condition
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plant conditions
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poor ground condition
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postfault conditions
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precipitation conditions
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prefault conditions
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process conditions
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program stop condition
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pulling condition
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pulse conditions
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pump-starving filter condition
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quenched condition
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quiescent condition
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rated conditions
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reaction conditions
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ready condition
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reductive conditions
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reference friction conditions
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refrigerating conditions
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rigidity condition
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roof conditions
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room conditions
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running conditions
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runoff conditions
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safety conditions
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self-testing conditions
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semistalled condition
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service conditions
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short-circuit conditions
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side condition
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simulated conditions
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slipping condition
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stability conditions
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stabilized condition
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stagnant conditions
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standard condition
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standby condition
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starting conditions
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start-oscillation condition
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static conditions
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static equilibrium conditions
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steady-state condition
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steady condition
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storage conditions
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stream conditions
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strength condition
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stress boundary conditions
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stress condition
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sufficient condition
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surface condition
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symmetrical conditions
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takeoff conditions
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technical conditions
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temperature conditions
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temper-brittle condition
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terminal conditions
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terrain undercarriage working condition
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test conditions
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test-bed conditions
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thermal boundary conditions
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thermal conditions
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thermodynamic condition
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traction-free boundary conditions
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tractor underfoot condition
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transient condition
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trial conditions
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turbulent conditions
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turn-down conditions
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unbalanced conditions
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unballasted condition
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under no-load conditions
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unenergized condition
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unmanned conditions
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unpredictable conditions
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unsteady-state condition
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unsteady condition
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upstream stagnation conditions
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usage conditions
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valve flow condition
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viewing conditions
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visibility reduced condition
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visual meteorological conditions
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wait condition
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weather conditions
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well production conditions
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wet-bulb conditions
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wind conditions
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wing icing conditions
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winter conditions
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working condition
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worst conditions
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zero-wind condition -
6 condition
условие; состояние; положение; р/ режим; параметры; кондиционировать condition acid - кислотная среда condition alkaline - щелочная среда condition ambient -s условия окружающей среды condition atmospheric - s атмосферные условия condition boundary - s граничные условия condition burning - s условия горения condition combustion -s условия сгорания или горение condition continuity - условие неразрывности или непрерывности condition critical -s критические условия; критический режим condition dead-end -s обстановка, характеризующаяся наличием тупикового эвакуационного пути condition design -s расчетные условия или параметры condition drought - (s) обстановка, характеризующаяся отсу гстнпсм воды (для тушения пожара) condition emergency - аварийное состояние; р! аварийные условия condition environmental -s внешние (окружающие) условия, условня окружающей среды condition field -s условия эксплуатации; условия боевого применения; оперативная обстановка condition fire -s обстановка на месте пожара condition flow -s параметры потока condition initial - s начальные (исходные) данные condition inlet (input) -s условия (параметры) (потока) на входе condition loss free - s отсутствие потерь;при отсутствии потерь condition nonfire -s отсутствие опасности возникновения пожара condition nonknocking -s нормальные условия сгорания condition normal -s нормальные условия (15° С и 760 ммрт. ст.) condition overheat - состояние (режим) перегрева; условия повышенных температур, condition reference -s стандартные условия condition safe(ty) - безопасное состояние или режим condition service -s условия эксплуатации condition service-simulated -s условия, имитирующие эксплуатационные condition smoke -s условия задымления, характер распространения дыма condition specific-loading -s режим, определенный по нормам прочности condition standard (sea-level) -s стандартные (нормальные) условия (на уровне моря) condition steady-state - стационарное (установившееся) состояние; pi стационарный (установившийся) режим condition temperature -s температурный режим condition thermal -s тепловой режим condition transient -s переходный (неустановившийся) режим condition turbulent - турбулентное состояние condition working -s эксплуатационные условия; условия работы -
7 courant admissible, m
(длительный) допустимый ток
Максимальное значение электрического тока, который может протекать длительно по проводнику, устройству или аппарату при определенных условиях без превышения определенного значения их температуры в установившемся режиме
[ ГОСТ Р МЭК 60050-826-2009]
Этот ток обозначают IZ
[ ГОСТ Р 50571. 1-2009 ( МЭК 60364-1: 2005)]EN
(continuous) current-carrying capacity
ampacity (US)
maximum value of electric current which can be carried continuously by a conductor, a device or an apparatus, under specified conditions without its steady-state temperature exceeding a specified value
[IEV number 826-11-13]
ampacity
The current in amperes that a conductor can carry continuously under the conditions of use without exceeding its temperature rating.
[National Electrical Cod]FR
courant (permanent) admissible, m
valeur maximale du courant électrique qui peut parcourir en permanence, un conducteur, un dispositif ou un appareil, sans que sa température de régime permanent, dans des conditions données, soit supérieure à la valeur spécifiée
[IEV number 826-11-13]Ampacity, the term is defined as the maximum amount of current a cable can carry before sustaining immediate or progressive deterioration. Also described as current rating or current-carrying capacity, is the RMS electric current which a device can continuously carry while remaining within its temperature rating. The ampacity of a cable depends on:
- its insulation temperature rating;
- conductor electrical properties for current;
- frequency, in the case of alternating currents;
- ability to dissipate heat, which depends on cable geometry and its surroundings;
- ambient temperature.
Electric wires have some resistance, and electric current flowing through them causes voltage drop and power dissipation, which heats the cable. Copper or aluminum can conduct a large amount of current before melting, but long before the conductors melt, their insulation would be damaged by the heat.
The ampacity for a power cable is thus based on physical and electrical properties of the material & construction of the conductor and of its insulation, ambient temperature, and environmental conditions adjacent to the cable. Having a large overall surface area may dissipate heat well if the environment can absorb the heat.
In a long run of cable, different conditions govern, and installation regulations normally specify that the most severe condition along the run governs the cable's rating. Cables run in wet or oily locations may carry a lower temperature rating than in a dry installation. Derating is necessary for multiple circuits in close proximity. When multiple cables are near, each contributes heat to the others and diminishes the amount of cooling air that can flow past the individual cables. The overall ampacity of the insulated conductors in a bundle of more than 3 must be derated, whether in a raceway or cable. Usually the de-rating factor is tabulated in a nation's wiring regulations.
Depending on the type of insulating material, common maximum allowable temperatures at the surface of the conductor are 60, 75 and 90 degrees Celsius, often with an ambient air temperature of 30°C. In the U.S., 105°C is allowed with ambient of 40°C, for larger power cables, especially those operating at more than 2 kV. Likewise, specific insulations are rated 150, 200 or 250°C.
The allowed current in cables generally needs to be decreased (derated) when the cable is covered with fireproofing material.
For example, the United States National Electric Code, Table 310-16, specifies that up to three 8 AWG copper wires having a common insulating material (THWN) in a raceway, cable, or direct burial has an ampacity of 50 A when the ambient air is 30°C, the conductor surface temperature allowed to be 75°C. A single insulated conductor in air has 70 A rating.
Ampacity rating is normally for continuous current, and short periods of overcurrent occur without harm in most cabling systems. The acceptable magnitude and duration of overcurrent is a more complex topic than ampacity.
When designing an electrical system, one will normally need to know the current rating for the following:- Wires
- Printed Circuit Board traces, where included
- Fuses
- Circuit breakers
- All or nearly all components used
Some devices are limited by power rating, and when this power rating occurs below their current limit, it is not necessary to know the current limit to design a system. A common example of this is lightbulb holders.
[http://en.wikipedia.org/wiki/Ampacity]
Тематики
- электротехника, основные понятия
Синонимы
EN
DE
- Dauerstrombelastbarkeit, f
- Strombelastbarkeit, f
FR
- courant admissible, m
- courant permanent admissible, m
Франко-русский словарь нормативно-технической терминологии > courant admissible, m
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8 courant permanent admissible, m
(длительный) допустимый ток
Максимальное значение электрического тока, который может протекать длительно по проводнику, устройству или аппарату при определенных условиях без превышения определенного значения их температуры в установившемся режиме
[ ГОСТ Р МЭК 60050-826-2009]
Этот ток обозначают IZ
[ ГОСТ Р 50571. 1-2009 ( МЭК 60364-1: 2005)]EN
(continuous) current-carrying capacity
ampacity (US)
maximum value of electric current which can be carried continuously by a conductor, a device or an apparatus, under specified conditions without its steady-state temperature exceeding a specified value
[IEV number 826-11-13]
ampacity
The current in amperes that a conductor can carry continuously under the conditions of use without exceeding its temperature rating.
[National Electrical Cod]FR
courant (permanent) admissible, m
valeur maximale du courant électrique qui peut parcourir en permanence, un conducteur, un dispositif ou un appareil, sans que sa température de régime permanent, dans des conditions données, soit supérieure à la valeur spécifiée
[IEV number 826-11-13]Ampacity, the term is defined as the maximum amount of current a cable can carry before sustaining immediate or progressive deterioration. Also described as current rating or current-carrying capacity, is the RMS electric current which a device can continuously carry while remaining within its temperature rating. The ampacity of a cable depends on:
- its insulation temperature rating;
- conductor electrical properties for current;
- frequency, in the case of alternating currents;
- ability to dissipate heat, which depends on cable geometry and its surroundings;
- ambient temperature.
Electric wires have some resistance, and electric current flowing through them causes voltage drop and power dissipation, which heats the cable. Copper or aluminum can conduct a large amount of current before melting, but long before the conductors melt, their insulation would be damaged by the heat.
The ampacity for a power cable is thus based on physical and electrical properties of the material & construction of the conductor and of its insulation, ambient temperature, and environmental conditions adjacent to the cable. Having a large overall surface area may dissipate heat well if the environment can absorb the heat.
In a long run of cable, different conditions govern, and installation regulations normally specify that the most severe condition along the run governs the cable's rating. Cables run in wet or oily locations may carry a lower temperature rating than in a dry installation. Derating is necessary for multiple circuits in close proximity. When multiple cables are near, each contributes heat to the others and diminishes the amount of cooling air that can flow past the individual cables. The overall ampacity of the insulated conductors in a bundle of more than 3 must be derated, whether in a raceway or cable. Usually the de-rating factor is tabulated in a nation's wiring regulations.
Depending on the type of insulating material, common maximum allowable temperatures at the surface of the conductor are 60, 75 and 90 degrees Celsius, often with an ambient air temperature of 30°C. In the U.S., 105°C is allowed with ambient of 40°C, for larger power cables, especially those operating at more than 2 kV. Likewise, specific insulations are rated 150, 200 or 250°C.
The allowed current in cables generally needs to be decreased (derated) when the cable is covered with fireproofing material.
For example, the United States National Electric Code, Table 310-16, specifies that up to three 8 AWG copper wires having a common insulating material (THWN) in a raceway, cable, or direct burial has an ampacity of 50 A when the ambient air is 30°C, the conductor surface temperature allowed to be 75°C. A single insulated conductor in air has 70 A rating.
Ampacity rating is normally for continuous current, and short periods of overcurrent occur without harm in most cabling systems. The acceptable magnitude and duration of overcurrent is a more complex topic than ampacity.
When designing an electrical system, one will normally need to know the current rating for the following:- Wires
- Printed Circuit Board traces, where included
- Fuses
- Circuit breakers
- All or nearly all components used
Some devices are limited by power rating, and when this power rating occurs below their current limit, it is not necessary to know the current limit to design a system. A common example of this is lightbulb holders.
[http://en.wikipedia.org/wiki/Ampacity]
Тематики
- электротехника, основные понятия
Синонимы
EN
DE
- Dauerstrombelastbarkeit, f
- Strombelastbarkeit, f
FR
- courant admissible, m
- courant permanent admissible, m
Франко-русский словарь нормативно-технической терминологии > courant permanent admissible, m
-
9 Dauerstrombelastbarkeit, f
(длительный) допустимый ток
Максимальное значение электрического тока, который может протекать длительно по проводнику, устройству или аппарату при определенных условиях без превышения определенного значения их температуры в установившемся режиме
[ ГОСТ Р МЭК 60050-826-2009]
Этот ток обозначают IZ
[ ГОСТ Р 50571. 1-2009 ( МЭК 60364-1: 2005)]EN
(continuous) current-carrying capacity
ampacity (US)
maximum value of electric current which can be carried continuously by a conductor, a device or an apparatus, under specified conditions without its steady-state temperature exceeding a specified value
[IEV number 826-11-13]
ampacity
The current in amperes that a conductor can carry continuously under the conditions of use without exceeding its temperature rating.
[National Electrical Cod]FR
courant (permanent) admissible, m
valeur maximale du courant électrique qui peut parcourir en permanence, un conducteur, un dispositif ou un appareil, sans que sa température de régime permanent, dans des conditions données, soit supérieure à la valeur spécifiée
[IEV number 826-11-13]Ampacity, the term is defined as the maximum amount of current a cable can carry before sustaining immediate or progressive deterioration. Also described as current rating or current-carrying capacity, is the RMS electric current which a device can continuously carry while remaining within its temperature rating. The ampacity of a cable depends on:
- its insulation temperature rating;
- conductor electrical properties for current;
- frequency, in the case of alternating currents;
- ability to dissipate heat, which depends on cable geometry and its surroundings;
- ambient temperature.
Electric wires have some resistance, and electric current flowing through them causes voltage drop and power dissipation, which heats the cable. Copper or aluminum can conduct a large amount of current before melting, but long before the conductors melt, their insulation would be damaged by the heat.
The ampacity for a power cable is thus based on physical and electrical properties of the material & construction of the conductor and of its insulation, ambient temperature, and environmental conditions adjacent to the cable. Having a large overall surface area may dissipate heat well if the environment can absorb the heat.
In a long run of cable, different conditions govern, and installation regulations normally specify that the most severe condition along the run governs the cable's rating. Cables run in wet or oily locations may carry a lower temperature rating than in a dry installation. Derating is necessary for multiple circuits in close proximity. When multiple cables are near, each contributes heat to the others and diminishes the amount of cooling air that can flow past the individual cables. The overall ampacity of the insulated conductors in a bundle of more than 3 must be derated, whether in a raceway or cable. Usually the de-rating factor is tabulated in a nation's wiring regulations.
Depending on the type of insulating material, common maximum allowable temperatures at the surface of the conductor are 60, 75 and 90 degrees Celsius, often with an ambient air temperature of 30°C. In the U.S., 105°C is allowed with ambient of 40°C, for larger power cables, especially those operating at more than 2 kV. Likewise, specific insulations are rated 150, 200 or 250°C.
The allowed current in cables generally needs to be decreased (derated) when the cable is covered with fireproofing material.
For example, the United States National Electric Code, Table 310-16, specifies that up to three 8 AWG copper wires having a common insulating material (THWN) in a raceway, cable, or direct burial has an ampacity of 50 A when the ambient air is 30°C, the conductor surface temperature allowed to be 75°C. A single insulated conductor in air has 70 A rating.
Ampacity rating is normally for continuous current, and short periods of overcurrent occur without harm in most cabling systems. The acceptable magnitude and duration of overcurrent is a more complex topic than ampacity.
When designing an electrical system, one will normally need to know the current rating for the following:- Wires
- Printed Circuit Board traces, where included
- Fuses
- Circuit breakers
- All or nearly all components used
Some devices are limited by power rating, and when this power rating occurs below their current limit, it is not necessary to know the current limit to design a system. A common example of this is lightbulb holders.
[http://en.wikipedia.org/wiki/Ampacity]
Тематики
- электротехника, основные понятия
Синонимы
EN
DE
- Dauerstrombelastbarkeit, f
- Strombelastbarkeit, f
FR
- courant admissible, m
- courant permanent admissible, m
Немецко-русский словарь нормативно-технической терминологии > Dauerstrombelastbarkeit, f
-
10 Strombelastbarkeit, f
(длительный) допустимый ток
Максимальное значение электрического тока, который может протекать длительно по проводнику, устройству или аппарату при определенных условиях без превышения определенного значения их температуры в установившемся режиме
[ ГОСТ Р МЭК 60050-826-2009]
Этот ток обозначают IZ
[ ГОСТ Р 50571. 1-2009 ( МЭК 60364-1: 2005)]EN
(continuous) current-carrying capacity
ampacity (US)
maximum value of electric current which can be carried continuously by a conductor, a device or an apparatus, under specified conditions without its steady-state temperature exceeding a specified value
[IEV number 826-11-13]
ampacity
The current in amperes that a conductor can carry continuously under the conditions of use without exceeding its temperature rating.
[National Electrical Cod]FR
courant (permanent) admissible, m
valeur maximale du courant électrique qui peut parcourir en permanence, un conducteur, un dispositif ou un appareil, sans que sa température de régime permanent, dans des conditions données, soit supérieure à la valeur spécifiée
[IEV number 826-11-13]Ampacity, the term is defined as the maximum amount of current a cable can carry before sustaining immediate or progressive deterioration. Also described as current rating or current-carrying capacity, is the RMS electric current which a device can continuously carry while remaining within its temperature rating. The ampacity of a cable depends on:
- its insulation temperature rating;
- conductor electrical properties for current;
- frequency, in the case of alternating currents;
- ability to dissipate heat, which depends on cable geometry and its surroundings;
- ambient temperature.
Electric wires have some resistance, and electric current flowing through them causes voltage drop and power dissipation, which heats the cable. Copper or aluminum can conduct a large amount of current before melting, but long before the conductors melt, their insulation would be damaged by the heat.
The ampacity for a power cable is thus based on physical and electrical properties of the material & construction of the conductor and of its insulation, ambient temperature, and environmental conditions adjacent to the cable. Having a large overall surface area may dissipate heat well if the environment can absorb the heat.
In a long run of cable, different conditions govern, and installation regulations normally specify that the most severe condition along the run governs the cable's rating. Cables run in wet or oily locations may carry a lower temperature rating than in a dry installation. Derating is necessary for multiple circuits in close proximity. When multiple cables are near, each contributes heat to the others and diminishes the amount of cooling air that can flow past the individual cables. The overall ampacity of the insulated conductors in a bundle of more than 3 must be derated, whether in a raceway or cable. Usually the de-rating factor is tabulated in a nation's wiring regulations.
Depending on the type of insulating material, common maximum allowable temperatures at the surface of the conductor are 60, 75 and 90 degrees Celsius, often with an ambient air temperature of 30°C. In the U.S., 105°C is allowed with ambient of 40°C, for larger power cables, especially those operating at more than 2 kV. Likewise, specific insulations are rated 150, 200 or 250°C.
The allowed current in cables generally needs to be decreased (derated) when the cable is covered with fireproofing material.
For example, the United States National Electric Code, Table 310-16, specifies that up to three 8 AWG copper wires having a common insulating material (THWN) in a raceway, cable, or direct burial has an ampacity of 50 A when the ambient air is 30°C, the conductor surface temperature allowed to be 75°C. A single insulated conductor in air has 70 A rating.
Ampacity rating is normally for continuous current, and short periods of overcurrent occur without harm in most cabling systems. The acceptable magnitude and duration of overcurrent is a more complex topic than ampacity.
When designing an electrical system, one will normally need to know the current rating for the following:- Wires
- Printed Circuit Board traces, where included
- Fuses
- Circuit breakers
- All or nearly all components used
Some devices are limited by power rating, and when this power rating occurs below their current limit, it is not necessary to know the current limit to design a system. A common example of this is lightbulb holders.
[http://en.wikipedia.org/wiki/Ampacity]
Тематики
- электротехника, основные понятия
Синонимы
EN
DE
- Dauerstrombelastbarkeit, f
- Strombelastbarkeit, f
FR
- courant admissible, m
- courant permanent admissible, m
Немецко-русский словарь нормативно-технической терминологии > Strombelastbarkeit, f
-
11 continuous current-carrying capacity
длительная пропускная способность по току
—
[Я.Н.Лугинский, М.С.Фези-Жилинская, Ю.С.Кабиров. Англо-русский словарь по электротехнике и электроэнергетике, Москва, 1999 г.]Тематики
- электротехника, основные понятия
EN
(длительный) допустимый ток
Максимальное значение электрического тока, который может протекать длительно по проводнику, устройству или аппарату при определенных условиях без превышения определенного значения их температуры в установившемся режиме
[ ГОСТ Р МЭК 60050-826-2009]
Этот ток обозначают IZ
[ ГОСТ Р 50571. 1-2009 ( МЭК 60364-1: 2005)]EN
(continuous) current-carrying capacity
ampacity (US)
maximum value of electric current which can be carried continuously by a conductor, a device or an apparatus, under specified conditions without its steady-state temperature exceeding a specified value
[IEV number 826-11-13]
ampacity
The current in amperes that a conductor can carry continuously under the conditions of use without exceeding its temperature rating.
[National Electrical Cod]FR
courant (permanent) admissible, m
valeur maximale du courant électrique qui peut parcourir en permanence, un conducteur, un dispositif ou un appareil, sans que sa température de régime permanent, dans des conditions données, soit supérieure à la valeur spécifiée
[IEV number 826-11-13]Ampacity, the term is defined as the maximum amount of current a cable can carry before sustaining immediate or progressive deterioration. Also described as current rating or current-carrying capacity, is the RMS electric current which a device can continuously carry while remaining within its temperature rating. The ampacity of a cable depends on:
- its insulation temperature rating;
- conductor electrical properties for current;
- frequency, in the case of alternating currents;
- ability to dissipate heat, which depends on cable geometry and its surroundings;
- ambient temperature.
Electric wires have some resistance, and electric current flowing through them causes voltage drop and power dissipation, which heats the cable. Copper or aluminum can conduct a large amount of current before melting, but long before the conductors melt, their insulation would be damaged by the heat.
The ampacity for a power cable is thus based on physical and electrical properties of the material & construction of the conductor and of its insulation, ambient temperature, and environmental conditions adjacent to the cable. Having a large overall surface area may dissipate heat well if the environment can absorb the heat.
In a long run of cable, different conditions govern, and installation regulations normally specify that the most severe condition along the run governs the cable's rating. Cables run in wet or oily locations may carry a lower temperature rating than in a dry installation. Derating is necessary for multiple circuits in close proximity. When multiple cables are near, each contributes heat to the others and diminishes the amount of cooling air that can flow past the individual cables. The overall ampacity of the insulated conductors in a bundle of more than 3 must be derated, whether in a raceway or cable. Usually the de-rating factor is tabulated in a nation's wiring regulations.
Depending on the type of insulating material, common maximum allowable temperatures at the surface of the conductor are 60, 75 and 90 degrees Celsius, often with an ambient air temperature of 30°C. In the U.S., 105°C is allowed with ambient of 40°C, for larger power cables, especially those operating at more than 2 kV. Likewise, specific insulations are rated 150, 200 or 250°C.
The allowed current in cables generally needs to be decreased (derated) when the cable is covered with fireproofing material.
For example, the United States National Electric Code, Table 310-16, specifies that up to three 8 AWG copper wires having a common insulating material (THWN) in a raceway, cable, or direct burial has an ampacity of 50 A when the ambient air is 30°C, the conductor surface temperature allowed to be 75°C. A single insulated conductor in air has 70 A rating.
Ampacity rating is normally for continuous current, and short periods of overcurrent occur without harm in most cabling systems. The acceptable magnitude and duration of overcurrent is a more complex topic than ampacity.
When designing an electrical system, one will normally need to know the current rating for the following:- Wires
- Printed Circuit Board traces, where included
- Fuses
- Circuit breakers
- All or nearly all components used
Some devices are limited by power rating, and when this power rating occurs below their current limit, it is not necessary to know the current limit to design a system. A common example of this is lightbulb holders.
[http://en.wikipedia.org/wiki/Ampacity]
Тематики
- электротехника, основные понятия
Синонимы
EN
DE
- Dauerstrombelastbarkeit, f
- Strombelastbarkeit, f
FR
- courant admissible, m
- courant permanent admissible, m
Англо-русский словарь нормативно-технической терминологии > continuous current-carrying capacity
-
12 ampacity (US)
(длительный) допустимый ток
Максимальное значение электрического тока, который может протекать длительно по проводнику, устройству или аппарату при определенных условиях без превышения определенного значения их температуры в установившемся режиме
[ ГОСТ Р МЭК 60050-826-2009]
Этот ток обозначают IZ
[ ГОСТ Р 50571. 1-2009 ( МЭК 60364-1: 2005)]EN
(continuous) current-carrying capacity
ampacity (US)
maximum value of electric current which can be carried continuously by a conductor, a device or an apparatus, under specified conditions without its steady-state temperature exceeding a specified value
[IEV number 826-11-13]
ampacity
The current in amperes that a conductor can carry continuously under the conditions of use without exceeding its temperature rating.
[National Electrical Cod]FR
courant (permanent) admissible, m
valeur maximale du courant électrique qui peut parcourir en permanence, un conducteur, un dispositif ou un appareil, sans que sa température de régime permanent, dans des conditions données, soit supérieure à la valeur spécifiée
[IEV number 826-11-13]Ampacity, the term is defined as the maximum amount of current a cable can carry before sustaining immediate or progressive deterioration. Also described as current rating or current-carrying capacity, is the RMS electric current which a device can continuously carry while remaining within its temperature rating. The ampacity of a cable depends on:
- its insulation temperature rating;
- conductor electrical properties for current;
- frequency, in the case of alternating currents;
- ability to dissipate heat, which depends on cable geometry and its surroundings;
- ambient temperature.
Electric wires have some resistance, and electric current flowing through them causes voltage drop and power dissipation, which heats the cable. Copper or aluminum can conduct a large amount of current before melting, but long before the conductors melt, their insulation would be damaged by the heat.
The ampacity for a power cable is thus based on physical and electrical properties of the material & construction of the conductor and of its insulation, ambient temperature, and environmental conditions adjacent to the cable. Having a large overall surface area may dissipate heat well if the environment can absorb the heat.
In a long run of cable, different conditions govern, and installation regulations normally specify that the most severe condition along the run governs the cable's rating. Cables run in wet or oily locations may carry a lower temperature rating than in a dry installation. Derating is necessary for multiple circuits in close proximity. When multiple cables are near, each contributes heat to the others and diminishes the amount of cooling air that can flow past the individual cables. The overall ampacity of the insulated conductors in a bundle of more than 3 must be derated, whether in a raceway or cable. Usually the de-rating factor is tabulated in a nation's wiring regulations.
Depending on the type of insulating material, common maximum allowable temperatures at the surface of the conductor are 60, 75 and 90 degrees Celsius, often with an ambient air temperature of 30°C. In the U.S., 105°C is allowed with ambient of 40°C, for larger power cables, especially those operating at more than 2 kV. Likewise, specific insulations are rated 150, 200 or 250°C.
The allowed current in cables generally needs to be decreased (derated) when the cable is covered with fireproofing material.
For example, the United States National Electric Code, Table 310-16, specifies that up to three 8 AWG copper wires having a common insulating material (THWN) in a raceway, cable, or direct burial has an ampacity of 50 A when the ambient air is 30°C, the conductor surface temperature allowed to be 75°C. A single insulated conductor in air has 70 A rating.
Ampacity rating is normally for continuous current, and short periods of overcurrent occur without harm in most cabling systems. The acceptable magnitude and duration of overcurrent is a more complex topic than ampacity.
When designing an electrical system, one will normally need to know the current rating for the following:- Wires
- Printed Circuit Board traces, where included
- Fuses
- Circuit breakers
- All or nearly all components used
Some devices are limited by power rating, and when this power rating occurs below their current limit, it is not necessary to know the current limit to design a system. A common example of this is lightbulb holders.
[http://en.wikipedia.org/wiki/Ampacity]
Тематики
- электротехника, основные понятия
Синонимы
EN
DE
- Dauerstrombelastbarkeit, f
- Strombelastbarkeit, f
FR
- courant admissible, m
- courant permanent admissible, m
Англо-русский словарь нормативно-технической терминологии > ampacity (US)
-
13 continuous current
(длительный) допустимый ток
Максимальное значение электрического тока, который может протекать длительно по проводнику, устройству или аппарату при определенных условиях без превышения определенного значения их температуры в установившемся режиме
[ ГОСТ Р МЭК 60050-826-2009]
Этот ток обозначают IZ
[ ГОСТ Р 50571. 1-2009 ( МЭК 60364-1: 2005)]EN
(continuous) current-carrying capacity
ampacity (US)
maximum value of electric current which can be carried continuously by a conductor, a device or an apparatus, under specified conditions without its steady-state temperature exceeding a specified value
[IEV number 826-11-13]
ampacity
The current in amperes that a conductor can carry continuously under the conditions of use without exceeding its temperature rating.
[National Electrical Cod]FR
courant (permanent) admissible, m
valeur maximale du courant électrique qui peut parcourir en permanence, un conducteur, un dispositif ou un appareil, sans que sa température de régime permanent, dans des conditions données, soit supérieure à la valeur spécifiée
[IEV number 826-11-13]Ampacity, the term is defined as the maximum amount of current a cable can carry before sustaining immediate or progressive deterioration. Also described as current rating or current-carrying capacity, is the RMS electric current which a device can continuously carry while remaining within its temperature rating. The ampacity of a cable depends on:
- its insulation temperature rating;
- conductor electrical properties for current;
- frequency, in the case of alternating currents;
- ability to dissipate heat, which depends on cable geometry and its surroundings;
- ambient temperature.
Electric wires have some resistance, and electric current flowing through them causes voltage drop and power dissipation, which heats the cable. Copper or aluminum can conduct a large amount of current before melting, but long before the conductors melt, their insulation would be damaged by the heat.
The ampacity for a power cable is thus based on physical and electrical properties of the material & construction of the conductor and of its insulation, ambient temperature, and environmental conditions adjacent to the cable. Having a large overall surface area may dissipate heat well if the environment can absorb the heat.
In a long run of cable, different conditions govern, and installation regulations normally specify that the most severe condition along the run governs the cable's rating. Cables run in wet or oily locations may carry a lower temperature rating than in a dry installation. Derating is necessary for multiple circuits in close proximity. When multiple cables are near, each contributes heat to the others and diminishes the amount of cooling air that can flow past the individual cables. The overall ampacity of the insulated conductors in a bundle of more than 3 must be derated, whether in a raceway or cable. Usually the de-rating factor is tabulated in a nation's wiring regulations.
Depending on the type of insulating material, common maximum allowable temperatures at the surface of the conductor are 60, 75 and 90 degrees Celsius, often with an ambient air temperature of 30°C. In the U.S., 105°C is allowed with ambient of 40°C, for larger power cables, especially those operating at more than 2 kV. Likewise, specific insulations are rated 150, 200 or 250°C.
The allowed current in cables generally needs to be decreased (derated) when the cable is covered with fireproofing material.
For example, the United States National Electric Code, Table 310-16, specifies that up to three 8 AWG copper wires having a common insulating material (THWN) in a raceway, cable, or direct burial has an ampacity of 50 A when the ambient air is 30°C, the conductor surface temperature allowed to be 75°C. A single insulated conductor in air has 70 A rating.
Ampacity rating is normally for continuous current, and short periods of overcurrent occur without harm in most cabling systems. The acceptable magnitude and duration of overcurrent is a more complex topic than ampacity.
When designing an electrical system, one will normally need to know the current rating for the following:- Wires
- Printed Circuit Board traces, where included
- Fuses
- Circuit breakers
- All or nearly all components used
Some devices are limited by power rating, and when this power rating occurs below their current limit, it is not necessary to know the current limit to design a system. A common example of this is lightbulb holders.
[http://en.wikipedia.org/wiki/Ampacity]
Тематики
- электротехника, основные понятия
Синонимы
EN
DE
- Dauerstrombelastbarkeit, f
- Strombelastbarkeit, f
FR
- courant admissible, m
- courant permanent admissible, m
непрерывный ток
—
[Я.Н.Лугинский, М.С.Фези-Жилинская, Ю.С.Кабиров. Англо-русский словарь по электротехнике и электроэнергетике, Москва, 1999]Тематики
- электротехника, основные понятия
EN
Англо-русский словарь нормативно-технической терминологии > continuous current
-
14 current-carrying capacity
(длительный) допустимый ток
Максимальное значение электрического тока, который может протекать длительно по проводнику, устройству или аппарату при определенных условиях без превышения определенного значения их температуры в установившемся режиме
[ ГОСТ Р МЭК 60050-826-2009]
Этот ток обозначают IZ
[ ГОСТ Р 50571. 1-2009 ( МЭК 60364-1: 2005)]EN
(continuous) current-carrying capacity
ampacity (US)
maximum value of electric current which can be carried continuously by a conductor, a device or an apparatus, under specified conditions without its steady-state temperature exceeding a specified value
[IEV number 826-11-13]
ampacity
The current in amperes that a conductor can carry continuously under the conditions of use without exceeding its temperature rating.
[National Electrical Cod]FR
courant (permanent) admissible, m
valeur maximale du courant électrique qui peut parcourir en permanence, un conducteur, un dispositif ou un appareil, sans que sa température de régime permanent, dans des conditions données, soit supérieure à la valeur spécifiée
[IEV number 826-11-13]Ampacity, the term is defined as the maximum amount of current a cable can carry before sustaining immediate or progressive deterioration. Also described as current rating or current-carrying capacity, is the RMS electric current which a device can continuously carry while remaining within its temperature rating. The ampacity of a cable depends on:
- its insulation temperature rating;
- conductor electrical properties for current;
- frequency, in the case of alternating currents;
- ability to dissipate heat, which depends on cable geometry and its surroundings;
- ambient temperature.
Electric wires have some resistance, and electric current flowing through them causes voltage drop and power dissipation, which heats the cable. Copper or aluminum can conduct a large amount of current before melting, but long before the conductors melt, their insulation would be damaged by the heat.
The ampacity for a power cable is thus based on physical and electrical properties of the material & construction of the conductor and of its insulation, ambient temperature, and environmental conditions adjacent to the cable. Having a large overall surface area may dissipate heat well if the environment can absorb the heat.
In a long run of cable, different conditions govern, and installation regulations normally specify that the most severe condition along the run governs the cable's rating. Cables run in wet or oily locations may carry a lower temperature rating than in a dry installation. Derating is necessary for multiple circuits in close proximity. When multiple cables are near, each contributes heat to the others and diminishes the amount of cooling air that can flow past the individual cables. The overall ampacity of the insulated conductors in a bundle of more than 3 must be derated, whether in a raceway or cable. Usually the de-rating factor is tabulated in a nation's wiring regulations.
Depending on the type of insulating material, common maximum allowable temperatures at the surface of the conductor are 60, 75 and 90 degrees Celsius, often with an ambient air temperature of 30°C. In the U.S., 105°C is allowed with ambient of 40°C, for larger power cables, especially those operating at more than 2 kV. Likewise, specific insulations are rated 150, 200 or 250°C.
The allowed current in cables generally needs to be decreased (derated) when the cable is covered with fireproofing material.
For example, the United States National Electric Code, Table 310-16, specifies that up to three 8 AWG copper wires having a common insulating material (THWN) in a raceway, cable, or direct burial has an ampacity of 50 A when the ambient air is 30°C, the conductor surface temperature allowed to be 75°C. A single insulated conductor in air has 70 A rating.
Ampacity rating is normally for continuous current, and short periods of overcurrent occur without harm in most cabling systems. The acceptable magnitude and duration of overcurrent is a more complex topic than ampacity.
When designing an electrical system, one will normally need to know the current rating for the following:- Wires
- Printed Circuit Board traces, where included
- Fuses
- Circuit breakers
- All or nearly all components used
Some devices are limited by power rating, and when this power rating occurs below their current limit, it is not necessary to know the current limit to design a system. A common example of this is lightbulb holders.
[http://en.wikipedia.org/wiki/Ampacity]
Тематики
- электротехника, основные понятия
Синонимы
EN
DE
- Dauerstrombelastbarkeit, f
- Strombelastbarkeit, f
FR
- courant admissible, m
- courant permanent admissible, m
предельно допустимый ток
—
[Я.Н.Лугинский, М.С.Фези-Жилинская, Ю.С.Кабиров. Англо-русский словарь по электротехнике и электроэнергетике, Москва, 1999 г.]Тематики
- электротехника, основные понятия
EN
прочность печатной платы к токовой нагрузке
Свойство печатной платы сохранять электрические и механические характеристики после воздействия максимально допустимой токовой нагрузки на печатный проводник или металлизированное отверстие печатной платы.
[ ГОСТ Р 53386-2009]Тематики
EN
Англо-русский словарь нормативно-технической терминологии > current-carrying capacity
-
15 environment
- условия эксплуатации (электрооборудования)
- условия окружающей среды
- среда
- операционная среда
- окружающие породы, вмещающие породы
- окружающая среда (в экологическом менеджменте)
- окружающая среда
- обстановка седиментации
- оборудование
- вычислительная среда
- внешняя среда
внешняя среда
Объекты, не принадлежащие рассматриваемому объекту, но оказывающие на него влияние.
[Сборник рекомендуемых терминов. Выпуск 107. Теория управления.
Академия наук СССР. Комитет научно-технической терминологии. 1984 г.]Тематики
- автоматизация, основные понятия
EN
вычислительная среда
Набор технических, программных и инструментальных средств, обеспечивающих определенный режим обработки информации или их совокупность, определяющая конфигурацию сети или системы. См. electromagnetic -, hostile ~, space ~, WE, WAE.
[Л.М. Невдяев. Телекоммуникационные технологии. Англо-русский толковый словарь-справочник. Под редакцией Ю.М. Горностаева. Москва, 2002]Тематики
- электросвязь, основные понятия
EN
оборудование
оборудование
Совокупность связанных между собой частей или устройств, из которых по крайней мере одно движется, а также элементы привода, управления и энергетические узлы, которые предназначены для определенного применения, в частности для обработки, производства, перемещения или упаковки материала. К термину «оборудование» относят также машину и совокупность машин, которые так устроены и управляемы, что они функционируют как единое целое для достижения одной и той же цели.
[ГОСТ ЕН 1070-2003]
-
[IEV number 151-11-25 ]
оборудование
Оснащение, материалы, приспособления, устройства, механизмы, приборы, инструменты и другие принадлежности, используемые в качестве частей электрической установки или в соединении с ней.
[ ГОСТ Р МЭК 60204-1-2007]EN
equipment
single apparatus or set of devices or apparatuses, or the set of main devices of an installation, or all devices necessary to perform a specific task
NOTE – Examples of equipment are a power transformer, the equipment of a substation, measuring equipment.
[IEV number 151-11-25 ]
equipment
material, fittings, devices, components, appliances, fixtures, apparatus, and the like used as part of, or in connection with, the electrical equipment of machines
[IEC 60204-1-2006]FR
équipement, m
matériel, m
appareil unique ou ensemble de dispositifs ou appareils, ou ensemble des dispositifs principaux d'une installation, ou ensemble des dispositifs nécessaires à l'accomplissement d'une tâche particulière
NOTE – Des exemples d’équipement ou de matériel sont un transformateur de puissance, l’équipement d’une sous-station, un équipement de mesure.
[IEV number 151-11-25]Тематики
EN
- accessories
- apparatus
- appliance
- assets
- environment
- equipment
- facility
- fitment
- fixing
- gear
- H/W
- hardware
- hardware environment
- HW
- installation
- instrument
- instrumentation
- layout
- machinery
- outfit
- paraphernalia
- plant
- plant stock
- product
- provisions
- rig
- rigging
- set-up
- stock-in-trade
- tackle
- technical equipment
- technique
DE
FR
- machine
- matériel, m
- équipement, m
обстановка седиментации
—
[ http://slovarionline.ru/anglo_russkiy_slovar_neftegazovoy_promyishlennosti/]Тематики
EN
окружающая среда
По ГОСТ Р 22.1.02-95
Совокупность средств обитания и общественно-производственной деятельности человека, включающая окружающую природную среду и элементы культурной или социально-экономической среды, совместно и непосредственно оказывающих влияние на людей и их хозяйство.
[СО 34.21.307-2005]
среда окружающая
Природные и искусственные материальные, общественные и духовные факторы, определяющие условия существования, формирования и деятельности человека
[Терминологический словарь по строительству на 12 языках (ВНИИИС Госстроя СССР)]
окружающая среда
Совокупность компонентов природной среды, природных и природно-антропогенных объектов, а также антропогенных объектов
[Федеральный закон от 10 января 2002 г. № 7-ФЗ. «Об охране окружающей среды»]
окружающая среда
Внешняя среда, в которой функционирует организация, включая воздух, воду, землю, природные ресурсы, флору, фауну, человека и их взаимодействие
[ ГОСТ Р ИСО 14001-98]
[ ГОСТ Р ИСО 14050-99]
[ ГОСТ Р 52104-2003]
Примечание.
В данном контексте внешняя среда простирается от среды в пределах организации до глобальной системы.
[Защита атмосферного воздуха от антропогенного загрязнения. Основные понятия, термины и определения (справочное пособие). Санкт-Петербург 2003 г.]Тематики
- безопасность гидротехнических сооружений
- защита атмосферы
- ресурсосбережение, обращение с отходами
- управление окружающей средой
EN
DE
FR
окружающая среда (в экологическом менеджменте)
Среда, в которой функционирует организация, включая воздух, воду, землю, природные ресурсы, флору, фауну, людей, а также их взаимодействие.
Примечание
В данном контексте окружающая среда простирается от среды в пределах организации до систем глобального масштаба.
[ http://www.14000.ru/glossary/main.php?PHPSESSID=25e3708243746ef7c85d0a8408d768af]EN
environment
Surroundings in which an organization operates, including air, water, land, natural resources, flora, fauna, humans, and their interrelations.
Note
Surroundings in this context extend from within an organization to the global system.
[ISO 14001]Тематики
EN
окружающие породы, вмещающие породы
—
[ http://slovarionline.ru/anglo_russkiy_slovar_neftegazovoy_promyishlennosti/]Тематики
EN
операционная среда
—
[Е.С.Алексеев, А.А.Мячев. Англо-русский толковый словарь по системотехнике ЭВМ. Москва 1993]Тематики
EN
условия окружающей среды
-
[IEV number 151-16-03]EN
ambient conditions
environmental conditions
characteristics of the environment which may affect performance of a device or system
NOTE – Examples of ambient conditions are pressure, temperature, humidity, radiation, vibration.
[IEV number 151-16-03]FR
conditions ambiantes, f, pl
caractéristiques du milieu ambiant qui peuvent influer sur le fonctionnement d'un dispositif ou d'un système
NOTE – Des exemples de conditions ambiantes sont la pression, la température, l'humidité, les rayonnements, les vibrations.
[IEV number 151-16-03]Тематики
- электротехника, основные понятия
EN
DE
FR
условия эксплуатации
Совокупность значений внешних воздействующих факторов, которые во время эксплуатации электротехнического изделия (электротехнического устройства, электрооборудования) могут на него влиять.
[ ГОСТ 18311-80]КЛАССИФИКАЦИЯ (по ГОСТ Р МЭК 61439-1-2012)
-
Условия эксплуатации:
-
Нормальные условия эксплуатации:
-
температура окружающей среды:
- при внутренней установке (при установке внутри помещения);
- при наружной установке (при установке вне помещения);
-
атмосферные условия:
- относительная влажность воздуха;
- степень загрязнения;
- высота над уровнем моря;
-
температура окружающей среды:
-
Особые условия эксплуатации:
- значения температуры окружающей среды, относительной алжности воздуха, высоты над уровнем моря, отличающиеся от нормальных условий эксплуатации;
- места установки, в которых температура окружающей среды и/или атмосферное давление могут изменяться так быстро, что внутри НКУ будет происходить образование конденсата в значительном количестве;
- сильное загрязнение воздуха пылью; наличие в воздухе дыма, коррозионных или радиоактивных частиц, испарений или соли;
- воздействие сильных электрических или магнитных полей;
- воздействие экстремальных климатических условий;
- образование плесени или воздействие микроорганизмов;
- установка в пожаро- или взрывоопасных местах;
- воздействие сильной вибрации или ударов;
- способ установки, приводящий к снижению допустимых токовых нагрузок или отключающей способности устройств, например, встаривание в машину или нишу в стене;
- воздействие наведенных или излучаемых помех, кроме электромагнитных и электромагнитных помех, кроме указанных в п. 9.4;
- повышеннные перенапряжения.
-
Нормальные условия эксплуатации:
НКУ должно эксплуатироваться в нормальных условиях эксплуатации.
НКУ, соответствующие требованиям настоящего стандарта, должны эксплуатироваться в указанных ниже условиях....
6.1.1 Температура окружающего воздуха
6.1.1.1 Температура окружающего воздуха при внутренней установке...
6.1.1.2 Температура окружающего воздуха при наружной установке...6.1.2 Атмосферные условия
6.1.2.1 Атмосферные условия при установке внутри помещений...
6.1.2.2 Атмосферные условия при наружной установке...6.1.2.3 Степень загрязнения...
6.1.3 Высота над уровнем моря мест установки...
[ ГОСТ Р 51321. 1-2000 ( МЭК 60439-1-92)]
Параллельные тексты EN-RU
The operation characteristic of Molded Case Circuit Breaker including short-circuit, overload, endurance and insulation is often influenced largely by external environment and thus should be applied appropriately with conditions of the place where it is used taken into consideration.
[LS Industrial Systems]Рабочие характеристики автоматического выключателя в литом корпусе, такие, как срабатывание защиты от короткого замыкания и перегрузки, коммутационная износостойкость и изоляционное расстояние, часто в значительной степени зависят от окружающей среды. Поэтому при установке выключателя необходимо учитывать условия, существующие в месте предстоящей эксплуатации выключателя.
[Перевод Интент]
Тематики
- НКУ (шкафы, пульты,...)
- эксплуатация электроустановок
Действия
Синонимы
Сопутствующие термины
- более жесткие условия эксплуатации
- более легкие условия эксплуатации
- допустимые условия эксплуатации
- жесткость условий эксплуатации
- номинальные условия эксплуатации
- нормальные условия эксплуатации
- особые условия эксплуатации
- самые тяжелые из предусмотренных условий эксплуатации
- тяжелые условия эксплуатации
EN
- application conditions
- application environment
- conditions of usage
- EE
- environment
- environmental service conditions
- external environment
- field conditions
- in-use conditions
- operating condition
- operating conditions
- operation conditions
- operational conditions
- operational environment
- running conditions
- service conditions
- service environment
- set of operating conditions
- usage conditions
- use environment
- working condition
3.3.3 среда (environment): Связь между синтаксисом и семантикой.
Примечание - В контексте настоящего стандарта объект environment привязывает к объекту generic_variable (синтаксису) соответствующее ему значение (семантику), представленное объектом variable_semantics.
Источник: ГОСТ Р ИСО 13584-20-2006: Системы автоматизации производства и их интеграция. Библиотека деталей. Часть 20. Логический ресурс. Логическая модель выражений оригинал документа
3.5 окружающая среда (environment): Окружение, в котором функционирует организация (3.16), включая воздух, воду, землю, природные ресурсы, флору, фауну, людей и их взаимодействие.
Примечание - Понятие «окружение» в данном контексте распространяется на среду в пределах от организации (3.16) до глобальной системы.
Источник: ГОСТ Р ИСО 14001-2007: Системы экологического менеджмента. Требования и руководство по применению оригинал документа
3.1 окружающая среда (environment): По ГОСТ Р ИСО 14001.
Источник: ГОСТ Р ИСО 14031-2001: Управление окружающей средой. Оценивание экологической эффективности. Общие требования оригинал документа
3.6 окружающая среда (environment): Окружение в котором функционирует организация (3.20), включая воздух, воду, землю, природные ресурсы, флору, фауну, людей в их взаимодействии.
Примечание - Понятие окружение в данном контексте распространяется на среду в пределах от организации (3.20) до глобальной системы.
[ИСО 14001:2004, 3.5]
Источник: ГОСТ Р ИСО 14004-2007: Системы экологического менеджмента. Общее руководство по принципам, системам и методам обеспечения функционирования оригинал документа
2.5 окружающая среда (environment): Внешняя среда, в которой функционирует организация, включая воздух, воду, землю, природные ресурсы, флору, фауну, человека и их взаимоотношения.
Примечание - В настоящем стандарте термин окружающая среда распространяется как на среду внутри организации, так и на окружающую среду.
Источник: ГОСТ Р ИСО 14015-2007: Экологический менеджмент. Экологическая оценка участков и организаций оригинал документа
3.1 окружающая среда (environment): Окружение, в котором функционирует организация, включая воздух, воду, землю, природные ресурсы, флору, фауну, человека и их взаимодействие.
Примечание - Понятие «окружение» в данном контексте распростирается на среду в пределах от организации до глобальной системы.
[ ГОСТ Р ИСО 14001-2007, пункт 3.5]
Источник: ГОСТ Р 54298-2010: Системы экологического менеджмента. Порядок сертификации систем экологического менеджмента на соответствие ГОСТ Р ИСО 14001-2007 оригинал документа
2.15 окружающая среда (environment): Окружение, в котором работает организация, включая воздух, воду, землю, природные ресурсы, флору, фауну, людей и их взаимоотношения.
[ИСО 14001:2004]
Примечание 1 - Термин «окружение» в этом контексте расширен от окружения в рамках организации до глобальной системы.
Примечание 2 - Для целей применения настоящего стандарта окружающая среда считается специфической заинтересованной стороной (2.47). Интересы данной специфической заинтересованной стороны (2.47) могут представлять компетентные органы (2.36), местные сообщества (2.7) или другие группы, например неправительственные организации (NGO).
Источник: ГОСТ Р ИСО 24511-2009: Деятельность, связанная с услугами питьевого водоснабжения и удаления сточных вод. Руководящие указания для менеджмента коммунальных предприятий и оценке услуг удаления сточных вод оригинал документа
2.15 окружающая среда (environment): Окружение, в котором работает организация, включая воздух, воду, землю, природные ресурсы, флору, фауну, людей и их взаимоотношения.
[ИСО 14001:2004]
Примечание 1 - Термин «окружение» в этом контексте расширен от окружения в рамках организации до глобальной системы.
Примечание 2 - Для целей применения настоящего стандарта окружающая среда считается специфической заинтересованной стороной (2.47). Интересы данной специфической заинтересованной стороны (2.47) могут представлять компетентные органы (2.36), местные сообщества (2.7) или другие группы, например неправительственные организации (NGO).
Источник: ГОСТ Р ИСО 24512-2009: Деятельность, связанная с услугами питьевого водоснабжения и удаления сточных вод. Руководящие указания для менеджмента систем питьевого водоснабжения и оценке услуг питьевого водоснабжения оригинал документа
3.5 окружающая среда (environment): Окружение, в котором функционирует организация (3.16), включая воздух, воду, землю, природные ресурсы, флору, фауну, людей и их взаимодействие.
Примечание - Понятие «окружение» в данном контексте распространяется на среду в пределах от организации (3.16) до глобальной системы.
Источник: ГОСТ Р 54336-2011: Системы экологического менеджмента в организациях, выпускающих нанопродукцию. Требования оригинал документа
3.30 окружающая среда (environment): Окружение, являющееся внешним по отношению к домену предприятия, которое влияет на его развитие и поведение и которое не контролируется самим предприятием.
Источник: ГОСТ Р ИСО 19439-2008: Интеграция предприятия. Основа моделирования предприятия оригинал документа
2.15 окружающая среда (environment): Окружение, в котором работает организация, включая воздух, воду, землю, природные ресурсы, флору, фауну, людей и их взаимоотношения.
[ИСО 14001:2004]
Примечание 1 - Термин «окружение» в этом контексте расширен от окружения в рамках организации до глобальной системы.
Примечание 2 - Для целей применения настоящего стандарта окружающая среда считается специфической заинтересованной стороной (2.47). Интересы данной специфической заинтересованной стороны (2.47) могут представлять компетентные органы (2.36), местные сообщества (2.7) или другие группы, например неправительственные организации (NGO).
Источник: ГОСТ Р ИСО 24510-2009: Деятельность, связанная с услугами питьевого водоснабжения и удаления сточных вод. Руководящие указания по оценке и улучшению услуги, оказываемой потребителям оригинал документа
2.12 окружающая среда (environment): Внешние и внутренние условия, влияющие на существование, развитие и характеристики процесса.
Источник: ГОСТ Р 52380.1-2005: Руководство по экономике качества. Часть 1. Модель затрат на процесс оригинал документа
3.1 окружающая среда (environment): Окружение, в котором организация (3.4) функционирует, включая воздух, воду, землю, природные ресурсы, флору, фауну, людей и их взаимодействие.
Примечание - В данном контексте понятие «окружение» распространяется на среду в пределах организации и до глобальной системы.
[ИСО 14001:2004]
Источник: ГОСТ Р ИСО 14050-2009: Менеджмент окружающей среды. Словарь оригинал документа
3.69 окружающая среда (environment): Окружение, являющееся внешним по отношению к домену предприятия, которое влияет на его развитие и поведение и которое не контролируется самим предприятием.
Источник: ГОСТ Р 54136-2010: Системы промышленной автоматизации и интеграция. Руководство по применению стандартов, структура и словарь оригинал документа
4.22 среда (environment): Связь между синтаксисом и семантикой.
Источник: ГОСТ Р 54136-2010: Системы промышленной автоматизации и интеграция. Руководство по применению стандартов, структура и словарь оригинал документа
Англо-русский словарь нормативно-технической терминологии > environment
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