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1 pioneer bore
Большой англо-русский и русско-английский словарь > pioneer bore
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2 pioneer bore
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3 pioneer bore
Техника: головная часть туннеля -
4 pioneer bore
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5 pioneer bore
головная часть туннеля; головная часть скважины -
6 pioneer bore
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7 bore
отверстие (расточенное или рассверленное); диаметр отверстия (цилиндра); внутренний диаметр; калибр; диаметр отверстия; диаметр в свету; просверленное отверстие; скважина; туннель; квершлаг; бур; II растачивать; высверливать; сверлить; бурить- bore hole - bore out - bore round to... - bore searcher - bore-stroke ratio - conical bore - cross bore - cylinder bore - pioneer bore - pocket bore - trial bore - wheel bore -
8 bore
1) ствол (скважины, шахты)2) отверстие ( расточенное или рассверлённое), канал3) диаметр отверстия или канала; внутренний диаметр4) растачивать, сверлить5) бур6) гидр. бор•- D-shape bearing bore -
adapted bore
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die bore
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engine cylinder bore
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fuel injection pump bore
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line bores
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link bore
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magnet bore
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missing bore
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pioneer bore
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spindle bore
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stator bore
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wheel hub bore -
9 pioneer well
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10 головная часть туннеля
Большой англо-русский и русско-английский словарь > головная часть туннеля
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11 головная часть туннеля
Англо-русский словарь технических терминов > головная часть туннеля
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12 well
1. скважина2. колодец3. источник4. отстойник, зумпфdual completion gas well — газовая скважина, законченная в двух горизонтах
dual completion oil well — нефтяная скважина, законченная в двух горизонтах
multiple string small diameter well — скважина, пробуренная для одновременной и раздельной эксплуатации нескольких продуктивных горизонтов, в которую спущено две и более эксплуатационных колонн малого диаметра
well out of control — скважина, фонтанирование которой не удаётся закрыть; открыто фонтанирующая скважина
well producing from … — эксплуатационная скважина, проведенная на (такой-то) пласт
— dry well— gas well— key well— oil well— well off— wet well
* * *
to abandon a well — ликвидировать скважину;
to bean a well back — снижать дебит фонтанирующей скважины;
to bean a well up — повышать дебит фонтанирующей скважины;
to blow a well — открывать фонтанирующую скважину на короткое время (для удаления воды, песка);
to bring a well in — вызывать приток пластового флюида в скважину;
to bump off a well — отсоединять насосную скважину от группового привода;
to case a well — обсаживать ствол скважины;
to complete a well — заканчивать скважину;
to dry up a well — откачивать жидкость из скважины;
to flow a well hard — эксплуатировать фонтанирующую скважину с максимально возможным дебитом;
to flush a well out — промывать скважину;
to hand off a well — отсоединять насосную скважину от группового привода;
to junk a well — ликвидировать скважину;
to kill a well — глушить скважину (уравновешивать пластовое давление);
to knife a well — чистить скважину (от парафина) скребками;
to line a well — обсаживать ствол скважины;
to mud a well up — подавать буровой раствор в скважину (после бурения с продувкой);
to place a well on choke — начинать дросселировать поток из скважины с помощью штуцера;
to plug up a well — устанавливать в скважину цементную пробку (с целью её ликвидации);
to pull a well — ликвидировать скважину с извлечением лифтовых труб и насосного оборудования;
to put a well on production — вводить скважину в эксплуатацию;
to put a well on the pump — 1. начинать насосную эксплуатацию скважины; 2. устанавливать насосный подъёмник в скважине
to rework a well — восстановить дебит скважины;
to rock a well — возбуждать приток в скважине попеременным открытием и закрытием устья;
to shoot a well — торпедировать скважину;
to shut down a well — консервировать скважину (в процессе строительства);
to shut in a well — закрывать скважину, останавливать скважину (устьевой задвижкой);
to strip a well — попеременно двигать колонны насосных штанг и лифтовых труб в скважине (для предотвращения скопления парафина);
to suspend a well — законсервировать строящуюся скважину;
to test a well — измерять дебит скважины;
to wake up a well — вызывать приток пластового флюида в скважину;
well on the pump — насосная скважина;
— dry well— gas well— key well— oil well
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скважина; колодец
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* * *
2) резервуар; компенсационный колодец, отстойник, зумпф•well has stopped flowing naturally — скважина прекратила естественное фонтанирование;
well imperfect due of method of completion — скважина, несовершенная по способу заканчивания;
well in operation — действующая скважина;
well kicked off natural — скважина, начавшая фонтанировать без возбуждения, без тартания и без кислотной обработки;
well off — простаивающая скважина;
well on the beam — скважина с насосным подъёмником;
well on the pump — насосная скважина;
well out of control — открыто фонтанирующая скважина; скважина, фонтанирование которой не удается остановить ();
well out of operation — бездействующая скважина;
well put into production — скважина, введённая в эксплуатацию;
well set on packer — скважина, оборудования пакером;
to bean a well back — снижать дебит фонтанирующей скважины;
to bean a well up — повышать дебит фонтанирующей скважины;
to blow a well — открывать фонтанирующую скважину на короткое время (<<для удаления воды>);
to blow a well clean — продувать скважину;
to bring a well in — вызывать приток пластового флюида в скважину;
to bring in a well — ввести скважину в эксплуатацию;
to bump off a well — отсоединять насосную скважину от группового привода;
to cap a well — ликвидировать скважину;
to case a well — крепить скважину обсадными трубами, обсаживать ствол скважины;
to complete a well — 1) подготавливать скважину к эксплуатации 2) заканчивать скважину;
to drill a well — бурить скважину;
to drive a well — бурить скважину;
to dry up a well — откачивать жидкость из скважины;
to dual a well — 1) эксплуатировать одновременно два горизонта в скважине 2) использовать силовую установку одной скважины для эксплуатации другой;
to flow a well hard — эксплуатировать фонтанирующую скважину с максимально возможным дебитом;
to flush a well out — промывать скважину;
to get a well back on production — возвращать скважину в эксплуатацию;
to hand a well off — прекращать насосную эксплуатацию скважины;
to hand off a well — отсоединять насосную скважину от группового привода;
to junk a well — ликвидировать скважину;
to knife a well — чистить скважину ( от парафина) скребками;
to line a well — крепить скважину обсадными трубами, обсаживать ствол скважины;
to place a well on choke — начинать дросселировать поток из скважины с помощью штуцера;
to prepare a well for production — подготавливать скважину к эксплуатации;
to pull a well — ликвидировать скважину с извлечением насосно-компрессорных труб и насосного оборудования;
to put a well back on production — возвращать скважину в эксплуатацию;
to put a well into production — вводить скважину в эксплуатацию;
to put a well on production — вводить скважину в эксплуатацию;
to put a well on stream — вводить скважину в эксплуатацию;
to put a well on the pump — 1) начинать насосную эксплуатацию скважины 2) устанавливать насосный подъёмник в скважине;
to return a well on production — возвращать скважину в эксплуатацию; повторно вводить скважину в эксплуатацию;
to rework a well — восстановить дебит скважины;
to rock a well — возбуждать приток в скважине попеременным открытием и закрытием устья;
to shoot a well — торпедировать скважину;
to shut in a well — закрывать скважину; останавливать фонтанирование; останавливать скважину ( устьевой задвижкой);
to start a well — приступать к бурению скважины;
to strip a well — попеременно двигать колонны насосных штанг и насосно-компрессорных труб в скважине ( для предотвращения скопления парафина);
to suspend a well — консервировать строящуюся скважину;
to test a well — измерять дебит скважины;
to test a well for production — испытывать скважину на приток;
to wake up a well — вызывать приток пластового флюида в скважину;
to wash a well into production — вводить скважину в эксплуатацию понижением уровня воды;
- abandoned condensate wellto wash a well out — промывать скважину;
- abandoned gas well
- abandoned oil well
- abandoned oil-and-gas well
- abnormal-pressure well
- absorption well
- Abyssinian well
- adjacent well
- adjoining well
- appraisal well
- artesian well
- barefooted well
- barren well
- base well
- beam well
- beam-pumped well
- belching well
- benchmark well
- blow well
- blowing well
- blowout well
- blue sky exploratory well
- borderline well
- bore well
- Braden head gas well
- breakthrough well
- breathing well
- brought-in well
- cable-tool well
- cased well
- cased-through well
- cemented-up well
- center well
- closed-in well
- close-spaced wells
- cluster well
- commercial well
- completed well
- condensate well
- confirmation well
- connected well
- controlled directional well
- converted gas-input well
- cored well
- corner well
- corrosive well
- cratering well
- crooked well
- curved well
- dead well
- declined well
- deep well
- deflected well
- development well
- development gas well
- development test well
- deviated well
- deviating well
- dewatering well
- directional well
- directionally drilled well
- discovery well
- disposal well
- diving well
- down-dip well
- drain-hole well
- drawn well
- drawned-out well
- drill well
- drill ship well
- drill ship center well
- drilled well
- drilled gas-input well
- drilled water-input well
- drilling well
- driven well
- drowned well
- dry well
- dual well
- dual-completion well
- dual-completion gas well
- dual-completion oil well
- dually-completed well
- dual-pumping well
- dual-zone well
- edge well
- exception well
- exhausted well
- exploratory well
- extension well
- field well
- field development well
- fill-in well
- flank well
- flooded well
- flowing well
- flowing producing oil well
- fresh-water well
- fully penetrating well
- gas well
- gas-injection well
- gaslift well
- geophysical well
- geothermal well
- gurgling well
- gusher well
- hand dog well
- head well
- high-flow-rate well
- high-pressure well
- horizontal well
- hydrodynamically imperfect well
- hydrodynamically perfect well
- hypothetical well
- image well
- imperfect well
- inactive well
- inclined well
- individual well
- infill well
- injection well
- injured well
- input well
- inspection well
- intake well
- intracontour well
- isolated-branched well
- jack well
- junked well
- key well
- kicking well
- killed well
- killer well
- leaking well
- line well
- low pressure well
- marginal well
- medium-depth well
- monitor well
- most probably well
- mudded well
- mudded-up well
- multipay well
- multiple-completion well
- multiple-string small diameter well
- multiple-zone well
- multistring well
- natural well
- neighboring well
- noncommercial well
- nonproducing well
- nonproductive well
- observation well
- off-pattern injection well
- off-structure well
- offset well
- offshore well
- oil well
- old well drilled deeper
- old well plugged back
- old well worked-over
- old abandoned well
- on-structure well
- on-the-beam well
- on-the-pump well
- open hole well
- orifice well
- out-of-control well
- outpost extension well
- output well
- overhauled well
- partially penetrating well
- paying well
- perfect well
- perforated well
- perimeter well
- piestic well
- pinch-out well
- pioneer well
- pipe well
- planned well
- platform well
- plugged-and-abandoned well
- pressure well
- pressure-observation well
- pressure-relief well
- producing well
- producing oil well
- producing oil-and-gas well
- production well
- prolific well
- prospect well
- pumped well
- pumper well
- pumping well
- pumping producing oil well
- purposely deviated well
- purposely slanted well
- quadruple completion well
- recipient wells
- recovery well
- relief well
- returned well to production
- rod-line well
- running well
- salt-dome well
- salt-up well
- salt-water well
- salt-water disposal well
- salt-water injection well
- sand well
- sand-clogged well
- sanded well
- sanded-up well
- sanding-up well
- sand-plugged well
- sand-producing well
- sand-up well
- sandy well
- satellite well
- seabed well
- selective water-injection well
- service well
- shallow well
- shut-in well
- shut-in gas well
- shut-in oil well
- side well
- single well
- single-completion well
- single-jacker well
- single-string well
- slanted well
- slim hole well
- special well
- staggered wells
- steam well
- steam-injection well
- step-out well
- straight well
- stratigraphic well
- stratigraphic test well
- stripped well
- stripper well
- strong well
- structure test well
- subsalt well
- sunken well
- superdeep well
- supply well
- surging well
- suspended well
- temporarily abandoned well
- temporarily shut-in well
- test well
- triple-completion well
- tubed well
- turnkey well
- twin well
- two-casing well
- two-string well
- ultradeep well
- underwater well
- unloading well
- unprofitable well
- untubed well
- upstream well
- vertical well
- waste disposal well
- water well
- water-dependent well
- water-disposal well
- water-free well
- water-injection well
- water-producing well
- water-supply well
- wet well
- wide-spaced wells
- wild well
- wild gas well
- wildcat well
- worked-over well
- workover well* * * -
13 Murdock (Murdoch), William
[br]b. 21 August 1754 Cumnock, Ayrshire, Scotlandd. 15 November 1839 Handsworth, Birmingham, England[br]Scottish engineer and inventor, pioneer in coal-gas production.[br]He was the third child and the eldest of three boys born to John Murdoch and Anna Bruce. His father, a millwright and joiner, spelled his name Murdock on moving to England. He was educated for some years at Old Cumnock Parish School and in 1777, with his father, he built a "wooden horse", supposed to have been a form of cycle. In 1777 he set out for the Soho manufactory of Boulton \& Watt, where he quickly found employment, Boulton supposedly being impressed by the lad's hat. This was oval and made of wood, and young William had turned it himself on a lathe of his own manufacture. Murdock quickly became Boulton \& Watt's representative in Cornwall, where there was a flourishing demand for steam-engines. He lived at Redruth during this period.It is said that a number of the inventions generally ascribed to James Watt are in fact as much due to Murdock as to Watt. Examples are the piston and slide valve and the sun-and-planet gearing. A number of other inventions are attributed to Murdock alone: typical of these is the oscillating cylinder engine which obviated the need for an overhead beam.In about 1784 he planned a steam-driven road carriage of which he made a working model. He also planned a high-pressure non-condensing engine. The model carriage was demonstrated before Murdock's friends and travelled at a speed of 6–8 mph (10–13 km/h). Boulton and Watt were both antagonistic to their employees' developing independent inventions, and when in 1786 Murdock set out with his model for the Patent Office, having received no reply to a letter he had sent to Watt, Boulton intercepted him on the open road near Exeter and dissuaded him from going any further.In 1785 he married Mary Painter, daughter of a mine captain. She bore him four children, two of whom died in infancy, those surviving eventually joining their father at the Soho Works. Murdock was a great believer in pneumatic power: he had a pneumatic bell-push at Sycamore House, his home near Soho. The pattern-makers lathe at the Soho Works worked for thirty-five years from an air motor. He also conceived the idea of a vacuum piston engine to exhaust a pipe, later developed by the London Pneumatic Despatch Company's railway and the forerunner of the atmospheric railway.Another field in which Murdock was a pioneer was the gas industry. In 1791, in Redruth, he was experimenting with different feedstocks in his home-cum-office in Cross Street: of wood, peat and coal, he preferred the last. He designed and built in the backyard of his house a prototype generator, washer, storage and distribution plant, and publicized the efficiency of coal gas as an illuminant by using it to light his own home. In 1794 or 1795 he informed Boulton and Watt of his experimental work and of its success, suggesting that a patent should be applied for. James Watt Junior was now in the firm and was against patenting the idea since they had had so much trouble with previous patents and had been involved in so much litigation. He refused Murdock's request and for a short time Murdock left the firm to go home to his father's mill. Boulton \& Watt soon recognized the loss of a valuable servant and, in a short time, he was again employed at Soho, now as Engineer and Superintendent at the increased salary of £300 per year plus a 1 per cent commission. From this income, he left £14,000 when he died in 1839.In 1798 the workshops of Boulton and Watt were permanently lit by gas, starting with the foundry building. The 180 ft (55 m) façade of the Soho works was illuminated by gas for the Peace of Paris in June 1814. By 1804, Murdock had brought his apparatus to a point where Boulton \& Watt were able to canvas for orders. Murdock continued with the company after the death of James Watt in 1819, but retired in 1830 and continued to live at Sycamore House, Handsworth, near Birmingham.[br]Principal Honours and DistinctionsRoyal Society Rumford Gold Medal 1808.Further ReadingS.Smiles, 1861, Lives of the Engineers, Vol. IV: Boulton and Watt, London: John Murray.H.W.Dickinson and R.Jenkins, 1927, James Watt and the Steam Engine, Oxford: Clarendon Press.J.A.McCash, 1966, "William Murdoch. Faithful servant" in E.G.Semler (ed.), The Great Masters. Engineering Heritage, Vol. II, London: Institution of Mechanical Engineers/Heinemann.IMcNBiographical history of technology > Murdock (Murdoch), William
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14 Well
[Wellington] — веллингтон (свита отдела леонард пермской системы, Среднеконтинентальный район)
* * *
to abandon a well — ликвидировать скважину;
to bean a well back — снижать дебит фонтанирующей скважины;
to bean a well up — повышать дебит фонтанирующей скважины;
to blow a well — открывать фонтанирующую скважину на короткое время (для удаления воды, песка);
to bring a well in — вызывать приток пластового флюида в скважину;
to bump off a well — отсоединять насосную скважину от группового привода;
to case a well — обсаживать ствол скважины;
to complete a well — заканчивать скважину;
to dry up a well — откачивать жидкость из скважины;
to flow a well hard — эксплуатировать фонтанирующую скважину с максимально возможным дебитом;
to flush a well out — промывать скважину;
to hand off a well — отсоединять насосную скважину от группового привода;
to junk a well — ликвидировать скважину;
to kill a well — глушить скважину (уравновешивать пластовое давление);
to knife a well — чистить скважину (от парафина) скребками;
to line a well — обсаживать ствол скважины;
to mud a well up — подавать буровой раствор в скважину (после бурения с продувкой);
to place a well on choke — начинать дросселировать поток из скважины с помощью штуцера;
to plug up a well — устанавливать в скважину цементную пробку (с целью её ликвидации);
to pull a well — ликвидировать скважину с извлечением лифтовых труб и насосного оборудования;
to put a well on production — вводить скважину в эксплуатацию;
to put a well on the pump — 1. начинать насосную эксплуатацию скважины; 2. устанавливать насосный подъёмник в скважине
to rework a well — восстановить дебит скважины;
to rock a well — возбуждать приток в скважине попеременным открытием и закрытием устья;
to shoot a well — торпедировать скважину;
to shut down a well — консервировать скважину (в процессе строительства);
to shut in a well — закрывать скважину, останавливать скважину (устьевой задвижкой);
to strip a well — попеременно двигать колонны насосных штанг и лифтовых труб в скважине (для предотвращения скопления парафина);
to suspend a well — законсервировать строящуюся скважину;
to test a well — измерять дебит скважины;
to wake up a well — вызывать приток пластового флюида в скважину;
well on the pump — насосная скважина;
— dry well— gas well— key well— oil well
* * *
скважина; колодец
* * *
* * *
2) резервуар; компенсационный колодец, отстойник, зумпф•well has stopped flowing naturally — скважина прекратила естественное фонтанирование;
well imperfect due of method of completion — скважина, несовершенная по способу заканчивания;
well in operation — действующая скважина;
well kicked off natural — скважина, начавшая фонтанировать без возбуждения, без тартания и без кислотной обработки;
well off — простаивающая скважина;
well on the beam — скважина с насосным подъёмником;
well on the pump — насосная скважина;
well out of control — открыто фонтанирующая скважина; скважина, фонтанирование которой не удается остановить ();
well out of operation — бездействующая скважина;
well put into production — скважина, введённая в эксплуатацию;
well set on packer — скважина, оборудования пакером;
to bean a well back — снижать дебит фонтанирующей скважины;
to bean a well up — повышать дебит фонтанирующей скважины;
to blow a well — открывать фонтанирующую скважину на короткое время (<<для удаления воды>);
to blow a well clean — продувать скважину;
to bring a well in — вызывать приток пластового флюида в скважину;
to bring in a well — ввести скважину в эксплуатацию;
to bump off a well — отсоединять насосную скважину от группового привода;
to cap a well — ликвидировать скважину;
to case a well — крепить скважину обсадными трубами, обсаживать ствол скважины;
to complete a well — 1) подготавливать скважину к эксплуатации 2) заканчивать скважину;
to drill a well — бурить скважину;
to drive a well — бурить скважину;
to dry up a well — откачивать жидкость из скважины;
to dual a well — 1) эксплуатировать одновременно два горизонта в скважине 2) использовать силовую установку одной скважины для эксплуатации другой;
to flow a well hard — эксплуатировать фонтанирующую скважину с максимально возможным дебитом;
to flush a well out — промывать скважину;
to get a well back on production — возвращать скважину в эксплуатацию;
to hand a well off — прекращать насосную эксплуатацию скважины;
to hand off a well — отсоединять насосную скважину от группового привода;
to junk a well — ликвидировать скважину;
to knife a well — чистить скважину ( от парафина) скребками;
to line a well — крепить скважину обсадными трубами, обсаживать ствол скважины;
to place a well on choke — начинать дросселировать поток из скважины с помощью штуцера;
to prepare a well for production — подготавливать скважину к эксплуатации;
to pull a well — ликвидировать скважину с извлечением насосно-компрессорных труб и насосного оборудования;
to put a well back on production — возвращать скважину в эксплуатацию;
to put a well into production — вводить скважину в эксплуатацию;
to put a well on production — вводить скважину в эксплуатацию;
to put a well on stream — вводить скважину в эксплуатацию;
to put a well on the pump — 1) начинать насосную эксплуатацию скважины 2) устанавливать насосный подъёмник в скважине;
to return a well on production — возвращать скважину в эксплуатацию; повторно вводить скважину в эксплуатацию;
to rework a well — восстановить дебит скважины;
to rock a well — возбуждать приток в скважине попеременным открытием и закрытием устья;
to shoot a well — торпедировать скважину;
to shut in a well — закрывать скважину; останавливать фонтанирование; останавливать скважину ( устьевой задвижкой);
to start a well — приступать к бурению скважины;
to strip a well — попеременно двигать колонны насосных штанг и насосно-компрессорных труб в скважине ( для предотвращения скопления парафина);
to suspend a well — консервировать строящуюся скважину;
to test a well — измерять дебит скважины;
to test a well for production — испытывать скважину на приток;
to wake up a well — вызывать приток пластового флюида в скважину;
to wash a well into production — вводить скважину в эксплуатацию понижением уровня воды;
- abandoned condensate wellto wash a well out — промывать скважину;
- abandoned gas well
- abandoned oil well
- abandoned oil-and-gas well
- abnormal-pressure well
- absorption well
- Abyssinian well
- adjacent well
- adjoining well
- appraisal well
- artesian well
- barefooted well
- barren well
- base well
- beam well
- beam-pumped well
- belching well
- benchmark well
- blow well
- blowing well
- blowout well
- blue sky exploratory well
- borderline well
- bore well
- Braden head gas well
- breakthrough well
- breathing well
- brought-in well
- cable-tool well
- cased well
- cased-through well
- cemented-up well
- center well
- closed-in well
- close-spaced wells
- cluster well
- commercial well
- completed well
- condensate well
- confirmation well
- connected well
- controlled directional well
- converted gas-input well
- cored well
- corner well
- corrosive well
- cratering well
- crooked well
- curved well
- dead well
- declined well
- deep well
- deflected well
- development well
- development gas well
- development test well
- deviated well
- deviating well
- dewatering well
- directional well
- directionally drilled well
- discovery well
- disposal well
- diving well
- down-dip well
- drain-hole well
- drawn well
- drawned-out well
- drill well
- drill ship well
- drill ship center well
- drilled well
- drilled gas-input well
- drilled water-input well
- drilling well
- driven well
- drowned well
- dry well
- dual well
- dual-completion well
- dual-completion gas well
- dual-completion oil well
- dually-completed well
- dual-pumping well
- dual-zone well
- edge well
- exception well
- exhausted well
- exploratory well
- extension well
- field well
- field development well
- fill-in well
- flank well
- flooded well
- flowing well
- flowing producing oil well
- fresh-water well
- fully penetrating well
- gas well
- gas-injection well
- gaslift well
- geophysical well
- geothermal well
- gurgling well
- gusher well
- hand dog well
- head well
- high-flow-rate well
- high-pressure well
- horizontal well
- hydrodynamically imperfect well
- hydrodynamically perfect well
- hypothetical well
- image well
- imperfect well
- inactive well
- inclined well
- individual well
- infill well
- injection well
- injured well
- input well
- inspection well
- intake well
- intracontour well
- isolated-branched well
- jack well
- junked well
- key well
- kicking well
- killed well
- killer well
- leaking well
- line well
- low pressure well
- marginal well
- medium-depth well
- monitor well
- most probably well
- mudded well
- mudded-up well
- multipay well
- multiple-completion well
- multiple-string small diameter well
- multiple-zone well
- multistring well
- natural well
- neighboring well
- noncommercial well
- nonproducing well
- nonproductive well
- observation well
- off-pattern injection well
- off-structure well
- offset well
- offshore well
- oil well
- old well drilled deeper
- old well plugged back
- old well worked-over
- old abandoned well
- on-structure well
- on-the-beam well
- on-the-pump well
- open hole well
- orifice well
- out-of-control well
- outpost extension well
- output well
- overhauled well
- partially penetrating well
- paying well
- perfect well
- perforated well
- perimeter well
- piestic well
- pinch-out well
- pioneer well
- pipe well
- planned well
- platform well
- plugged-and-abandoned well
- pressure well
- pressure-observation well
- pressure-relief well
- producing well
- producing oil well
- producing oil-and-gas well
- production well
- prolific well
- prospect well
- pumped well
- pumper well
- pumping well
- pumping producing oil well
- purposely deviated well
- purposely slanted well
- quadruple completion well
- recipient wells
- recovery well
- relief well
- returned well to production
- rod-line well
- running well
- salt-dome well
- salt-up well
- salt-water well
- salt-water disposal well
- salt-water injection well
- sand well
- sand-clogged well
- sanded well
- sanded-up well
- sanding-up well
- sand-plugged well
- sand-producing well
- sand-up well
- sandy well
- satellite well
- seabed well
- selective water-injection well
- service well
- shallow well
- shut-in well
- shut-in gas well
- shut-in oil well
- side well
- single well
- single-completion well
- single-jacker well
- single-string well
- slanted well
- slim hole well
- special well
- staggered wells
- steam well
- steam-injection well
- step-out well
- straight well
- stratigraphic well
- stratigraphic test well
- stripped well
- stripper well
- strong well
- structure test well
- subsalt well
- sunken well
- superdeep well
- supply well
- surging well
- suspended well
- temporarily abandoned well
- temporarily shut-in well
- test well
- triple-completion well
- tubed well
- turnkey well
- twin well
- two-casing well
- two-string well
- ultradeep well
- underwater well
- unloading well
- unprofitable well
- untubed well
- upstream well
- vertical well
- waste disposal well
- water well
- water-dependent well
- water-disposal well
- water-free well
- water-injection well
- water-producing well
- water-supply well
- wet well
- wide-spaced wells
- wild well
- wild gas well
- wildcat well
- worked-over well
- workover well* * * -
15 well
1) колодец; источник2) скважина3) водоём; резервуар4) отстойник, зумпф5) шахта (напр. лифта)7) углубление8) канал; труба•- absorption well - air well - anchor well - artesian well - blowing well - bore well - bow well - branched well - clarification well - commercial well - control well - dead well - discharging well - disposal well - drainage well - dredging well - dug well - dump well - elevator well - exploratory well - feed well - filter well - flowing well - imperfect well - intake well - irrigation well - isolated well - key well - ladle well - lift well - light well - master well - natural-strained well - observation well - offset well - open well - open-end well - pioneer well - pipe well - pressure-relief well - recharge well - relief well - screened well - stair well - steep-sided well - stilling well - stripped well - suction well - sunk well - supply well - surging well - three-dimensional square well - tube well - tubular well - water well* * *колодец; скважина; источник- absorbing well
- abyssinian well
- air well
- artesian well
- bleeder well
- bored well
- bow well
- cased well
- clarification well
- collecting well
- combination well
- completely penetrating well
- compound well
- confined well
- control well
- deep well
- discharging well
- disposal well
- drain well
- dredging well
- driven well
- dry well
- dug well
- dump well
- ebbing well
- elevator well
- escalator well
- filter well
- float well
- flowing well
- fully penetrating well
- gauge well
- gravity well
- groundwater well
- horizontal filter well
- hot well
- imperfect well
- incomplete well
- index well
- injection well
- inlet well
- input well
- inverted well
- leaching well
- lift well
- negative well
- nonartesian well
- nonpenetrating well
- observation well
- open well
- open-end well
- partially penetrating well
- percolation well
- perfect well
- perforated-casing well
- pump well
- radial well
- recharge well
- relief well
- sand drainage well
- screened well
- settling well
- shallow well
- stair well
- stern well
- stilling well
- test well
- thermometer well
- tube well
- waste well
- water well
- wet well -
16 Allen, Horatio
[br]b. 10 May 1802 Schenectady, New York, USAd. 1 January 1890 South Orange, New Jersey, USA[br]American engineer, pioneer of steam locomotives.[br]Allen was the Resident Engineer for construction of the Delaware \& Hudson Canal and in 1828 was instructed by J.B. Jervis to visit England to purchase locomotives for the canal's rail extension. He drove the locomotive Stourbridge Lion, built by J.U. Rastrick, on its first trial on 9 August 1829, but weak track prevented its regular use.Allen was present at the Rainhill Trials on the Liverpool \& Manchester Railway in October 1829. So was E.L.Miller, one of the promoters of the South Carolina Canal \& Rail Road Company, to which Allen was appointed Chief Engineer that autumn. Allen was influential in introducing locomotives to this railway, and the West Point Foundry built a locomotive for it to his design; it was the first locomotive built in the USA for sale. This locomotive, which bore some resemblance to Novelty, built for Rainhill by John Braithwaite and John Ericsson, was named Best Friend of Charleston. On Christmas Day 1830 it hauled the first scheduled steam train to run in America, carrying 141 passengers.In 1832 the West Point Foundry built four double-ended, articulated 2–2–0+0–2–2 locomotives to Horatio Allen's design for the South Carolina railroad. From each end of a central firebox extended two boiler barrels side by side with common smokeboxes and chimneys; wheels were mounted on swivelling sub-frames, one at each end, beneath these boilers. Allen's principal object was to produce a powerful locomotive with a light axle loading.Allen subsequently became a partner in Stillman, Allen \& Co. of New York, builders of marine engines, and in 1843 was President of the Erie Railroad.[br]Further ReadingJ.Marshall, 1978, A Biographical Dictionary of Railway Engineers, Newton Abbot: David \& Charles.Dictionary of American Biography.R.E.Carlson, 1969, The Liverpool \& Manchester Railway Project 1821–1831, Newton Abbot: David \& Charles.J.F.Stover, 1961, American Railroads, Chicago: University of Chicago Press.J.H.White Jr, 1994, "Old debts and new visions", in Common Roots—Separate Branches, London: Science Museum, 79–82.PJGR -
17 Butler, Edward
[br]b. 1863d. 1940[br]English motoring pioneer, designer of a motor tricycle.[br]In 1884 Butler patented a design for a motor tricycle that was shown that year at the Stanley Cycle Show and in the following year at the Inventions Exhibition. In 1887 he patented his "Petrol-tricycle", which was built the following year. The cycle was steered through its two front wheels, while it was driven through its single rear wheel. The motor, which was directly connected to the rear wheel hub by means of overhung cranks, consisted of a pair of water-cooled 2 1/4 in. (57 mm) bore cylinders with an 8 in. (203 mm) stroke working on the Clerk two-stroke cycle. Ignition was by electric spark produced by a wiper breaking contact with the piston, adopted from Butler's own design of electrostatic ignition machine; this was later replaced by a Ruhmkorff coil and a battery. There was insufficient power with direct drive and the low engine speed of c.100 rpm, producing a road speed of approximately 12 mph (19 km/h), so Butler redesigned the engine with a 6 3/4 in. (171 mm) stroke and a four-stroke cycle with an epicyclic reduction gear drive of 4:1 and later 6:1 ratio which could run at 600 rpm. The combination of restrictive speed-limit laws and shortsightedness of his backers prevented development, despite successful road demonstrations. Interest was non-existent by 1895, and the following year this first English internal combustion engined motorcycle was broken up for the scrap value of some 163 lb (74 kg) of copper and brass contained in its structure.[br]Further ReadingC.F.Caunter, 1982, Motor Cycles, 3rd edn, London: HMSO/Science Museum.IMcN -
18 Chaudron, Joseph
SUBJECT AREA: Mining and extraction technology[br]b. 29 November 1822 Gosselies, Belgiumd. 16 January 1905 Auderghem, Belgium[br]Belgian mining engineer, pioneer in boring shafts.[br]In 1842, as a graduate of the Ecole des Mines in Liège, he became a member of the Belgian Corps Royal des Mines, which he left ten years later as Chief Engineer. By that time he had become decisively influential in the Société Anglo-Belge des Mines du Rhin, founded in 1848. After it became the Gelsenkirchen-based Bergwerkgesellschaft Dahlbusch in 1873, he became President of its Board of Directors and remained in this position until his death. Thanks to his outstanding technical and financial abilities, the company developed into one of the largest in the Ruhr coal district.When K.G. Kind practised his shaft-boring for the company in the early 1850s but did not overcome the difficulty of making the bottom of the bore-hole watertight, Chaudron joined forces with him to solve the problem and constructed a rotary heading which was made watertight with a box stuffed with moss; rings of iron tubing were placed on this as the sinking progressed, effectively blocking off the aquiferous strata as a result of the hydrostatic pressure which helped support the weight of the tubing until it was secured permanently. The Kind-Chaudron system of boring shafts in the full section marked an important advance upon existing methods, and was completely applied for the first time at a coalmine near Mons, Belgium, in 1854–6. In Brussels Chaudron and Kind founded the Société de Fonçage par le Procédé Kind et Chaudron in 1854, and Chaudron was granted a patent the next year. Foreign patents followed and the Kind-Chaudron system was the one most frequently applied in the latter part of the nineteenth century. Altogether, under Chaudron's control, there were more than eighty shafts sunk in wet strata in Germany, Belgium, France and England.[br]Bibliography1853–4, "Notice sur le procédé inventé par l'ingénieur Kind, pour l"établissement des puits de mines', Annales des travaux publics de Belgique 12:327–38.1862, "Über die nach dem Kindschen Erdbohrverfahren in Belgien ausgefùhrten Schachtbohrarbeiten", Berg-und Hüttenmännische Zeitschrift 21:402−7, 419−21, 444−7.1867, "Notice sur les travaux exécutés en France, en Belgique et en Westphalie de 1862– 1867", Annales des travaux publics de Belgique 25: 136–45.1872, "Remplacement d'un cuvelage en bois par un cuvelage en fonte", Annales destravaux publics de Belgique 30:77–91.Further ReadingD.Hoffmann, 1962, Acht Jahrzehnte Gefrierverfahren nachPötsch, Essen, pp. 12–18 (evaluates the Kind-Chaudron system as a new era).W.Kesten, 1952, Geschichte der Bergwerksgesellschaft Dahlbusch, Essen (gives a delineation of the mining company's flourishing as well as the technical measures under his influence).T.Tecklenburg, 1914, Handbuch der Tiefbohrkunde, 2nd edn, Vol VI, Berlin, pp. 39–58 (provides a detailed description of Chaudron's tubing).WK -
19 Demenÿ, Georges
SUBJECT AREA: Photography, film and optics[br]b. 1850 Douai, France d. 1917[br]French chronophotographer.[br]As a young man Georges Demenÿ was a pioneer of physical education in France, and this led him to contact the physiologist Professor Marey in 1880. Marey had made a special study of animal movement, and Demenÿ hoped to work with him on research into physiological problems related to gymnastics. He joined Marey the following year, and when in 1882 the Physiological Station was set up near Paris to develop sequence photography for the study of movement. Demenÿ was made Head of the laboratory. He worked with the multiple-image fixed-plate cameras, and was chiefly responsible for the analysis of the records, having considerable mathematical and graphical ability. He also appeared as the subject in a number of the sequences. When in 1888 Marey began the development of a film camera, Demenÿ was involved in its design and operation. He became interested in the possibility of using animated sequence photographs as an aid to teaching of the deaf. He made close-up records of himself speaking short phrases, "Je vous aime" and "Vive la France" for example, which were published in such journals as Paris Photographe and La Nature in 1891 and 1892. To present these in motion, he devised the Phonoscope, which he patented on 3 March 1892. The series of photographs were mounted around the circumference of a disc and viewed through a counter-rotating slotted disc. The moving images could be viewed directly, or projected onto a screen. La Nature reported tests he had made in which deaf lip readers could interpret accurately what was being said. On 20 December 1892 Demenÿ formed a company, Société Générale du Phonoscope, to exploit his invention, hoping that "speaking portraits" might replace family-album pictures. This commercial activity led to a rift between Marey and Demenÿ in July 1893. Deprived of access to the film cameras, Demenÿ developed designs of his own, patenting new camera models in France on 10 October 1893 and 27 July 1894. The design covered by the latter had been included in English and German patents filed in December 1893, and was to be of some significance in the early development of cinematography. It was for an intermittent movement of the film, which used an eccentrically mounted blade or roller that, as it rotated, bore on the film, pulling down the length of one frame. As the blade moved away, the film loop so formed was taken up by the rotation of the take-up reel. This "beater" movement was employed extensively in the early years of cinematography, being effective yet inexpensive. It was first employed in the Chronophotographe apparatus marketed by Gaumont, to whom Demenÿ had licensed the patent rights, from the autumn of 1896. Demenÿ's work provided a link between the scientific purposes of sequence photography— chronophotography—and the introduction of commercial cinematography.[br]Further ReadingJ.Deslandes, 1966, Histoire comparée du cinéma, Vol. I, Paris. B.Coe, 1992, Muybridge and the Chronophotographers, London.BC -
20 Drake, Edwin Laurentine
SUBJECT AREA: Mining and extraction technology[br]b. 29 March 1819 Greenville, New York, USAd. 8 November 1880 Bethlehem, Pennsylvania, USA[br]American pioneer oil driller.[br]He worked on his father's farm, was a clerk in a hotel and a store, and then became an express agent at a railway company in Springfield, Massachusetts, c.1845. After he had been working as a railway conductor in New Haven, Connecticut, for eight years, he resigned because of ill health. Owning some stocks in a Pennsylvania rock-oil company, which gathered oil from ground-level seepages mainly for medicinal use, he was engaged by this company and moved to Titusville, Pennsylvania, at the age of almost 40. After studying salt-well drilling by cable tool, which was still percussive, he became enthusiastic about the idea of using the same method to drill for oil, especially after researches in chemistry had revealed this new sort of fossil energy some years before.As a manager of the Seneca Oil Company, which referred to him as "Colonel" in letters of introduction simply to impress people with such titles, Drake began drilling in 1858, almost at the same time as pole-tool drilling for oil was started in Germany. His main contribution to the technology was the use of an iron pipe driven through the quicksand and the bedrock to prevent the bore-hole from filling. After nineteen months he struck oil at a depth of 21 m (69 ft) in August 1859. This was the first time that petroleum was struck at its source and the first proof of the presence of oil reservoirs within the earth's surface. Drake inaugurated the search for and the exploitation of the deep oil resources of the world and he initiated the science of petroleum engineering which became established at the beginning of the twentieth century.Drake failed to patent his drilling method; he was content being an oil commission merchant and Justice of the Peace in Titusville, which like other places in Pennsylvania became a boom town. Four years later he went to New York, where he lost all his money in oil speculations. He became very ill again and lived in poverty in Vermont and New Jersey until 1873, when he moved to Bethlehem, Pennsylvania, where he was pensioned by the state of Pennsylvania. The city of Titusville erected a monument to him and founded the Drake Museum.[br]Further ReadingDictionary of American Biography, Vol. III, pp. 427–8.Ida M.Tarbell, 1904, "The birth of industry", History of the Standard Oil Company, Vol. I, New York (gives a lively description of the booming years in Pennsylvania caused by Drake's successful drilling).H.F.Williamson and A.R.Daum, 1959, The American Petroleum Industry. The Age of Illumination, Evans ton, Ill.WKBiographical history of technology > Drake, Edwin Laurentine
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