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  • 121 closing

    1. электромагнит включения (автоматического выключателя)
    2. укупоривание
    3. перекрытие
    4. отсечка
    5. запирание
    6. замыкание
    7. закрытие
    8. включение

     

    включение

    [А.С.Гольдберг. Англо-русский энергетический словарь. 2006 г.]

    Тематики

    EN

     

    закрытие
    -
    [Лугинский Я. Н. и др. Англо-русский словарь по электротехнике и электроэнергетике. 2-е издание - М.: РУССО, 1995 - 616 с.]

    Тематики

    • электротехника, основные понятия

    EN

     

    замыкание

    [ http://www.iks-media.ru/glossary/index.html?glossid=2400324]

    замыкание
    -
    [Лугинский Я. Н. и др. Англо-русский словарь по электротехнике и электроэнергетике. 2-е издание - М.: РУССО, 1995 - 616 с.]

    Тематики

    • электросвязь, основные понятия
    • электротехника, основные понятия

    EN

     

    запирание

    [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

     

    отсечка

    [Я.Н.Лугинский, М.С.Фези-Жилинская, Ю.С.Кабиров. Англо-русский словарь по электротехнике и электроэнергетике, Москва, 1999]

    Тематики

    • электротехника, основные понятия

    EN

     

    перекрытие

    [А.С.Гольдберг. Англо-русский энергетический словарь. 2006 г.]

    Тематики

    EN

     

    укупоривание
    Ндп. укупорка
    запечатывание

    Закрывание тары после помещения в нее продукции с целью обеспечения ее сохранности и создания условий ее транспортирования, хранения и сбыта.
    [ ГОСТ 16299-78]

    Недопустимые, нерекомендуемые

    Тематики

    • упаковка, упаковывание

    Обобщающие термины

    EN

    DE

    FR

     

    электромагнит включения (автоматического выключателя)
    -

    Параллельные тексты EN-RU

    Remote closing is operated by the closing coil.
    [LS Industrial Systems]

    Дистанционное включение (автоматического выключатля) производится с помощью электромагнита включения.
    [Перевод Интент]

    Closing Coil
    It is a control device which closes a circuit breaker, when applying voltage continuously or instantaneously over 200ms to the coil control terminals.

    [LS Industrial Systems]

    Электромагнит включения автоматического выключателя
    Данный электромагнит включает автоматический выключатель при подаче напряжения на выводы электромагнита непрерывно или в виде импульса длительностью не менее 200 мс.

    [Перевод Интент]

    Тематики

    EN

    26. Укупоривание

    Ндп. Укупорка

    Запечатывание

    D. Verschliessen

    E. Closing

    F. Bouchage

    Закрывание тары после помещения в нее продукции с целью обеспечения ее сохранности и создания условий ее транспортирования, хранения и сбыта

    Источник: ГОСТ 16299-78: Упаковывание. Термины и определения оригинал документа

    Англо-русский словарь нормативно-технической терминологии > closing

  • 122 closing release

    1. электромагнит включения (автоматического выключателя)

     

    электромагнит включения (автоматического выключателя)
    -

    Параллельные тексты EN-RU

    Remote closing is operated by the closing coil.
    [LS Industrial Systems]

    Дистанционное включение (автоматического выключатля) производится с помощью электромагнита включения.
    [Перевод Интент]

    Closing Coil
    It is a control device which closes a circuit breaker, when applying voltage continuously or instantaneously over 200ms to the coil control terminals.

    [LS Industrial Systems]

    Электромагнит включения автоматического выключателя
    Данный электромагнит включает автоматический выключатель при подаче напряжения на выводы электромагнита непрерывно или в виде импульса длительностью не менее 200 мс.

    [Перевод Интент]

    Тематики

    EN

    Англо-русский словарь нормативно-технической терминологии > closing release

  • 123 dynamic defrost

    1. динамическое оттаивание

     

    динамическое оттаивание
    -
    [Интент]

    Параллельные тексты EN-RU

    Dynamic and alternate defrost

    Defrost is necessary to ensure efficient operation of heat pumps in winter.

    Typical rooftop starts defrost cycle when the outside temperature is below a set temperature and repeat the defrost cycles periodically.

    It results sometimes in starting an expensive defrost cycle when it is very cold outside but very dry, or too warm, in other words when the coil is not frozen.

    Dynamic Defrost is Lennox' answers to unnecessary defrost cycles.

    Dynamic defrost detects icing of the coil by monitoring the difference between refrigerant and outside temperature and starts the defrost cycle only when required.

    Under certain conditions a rooftop unit equipped with this built in dynamic defrost feature can run several hours in heat pump mode without starting any defrost cycle.

    Dynamic defrost can save up to 15% on annual energy consumption
    .
    [Lennox]

    Динамическое и переменное оттаивание

    Оттаивание необходимо для обеспечения эффективной работы холодильных контуров в режиме теплового насоса в зимнее время года.

    Обычно крышный кондиционер начинает цикл оттаивания когда температура наружного воздуха опустится ниже заданного значения, и затем периодически его повторяет.

    При таком алгоритме цикл оттаивания, который является достаточно дорогим, может начаться когда воздух имеет низкую температуру и низкую влажность или, когда воздух слишком теплый, т. е. когда на теплообменнике отсутствует снеговая шуба.

    Разработанное компанией Lennox динамическое оттаивание исключает выполнение ненужных циклов оттаивания.

    При динамическом оттаивании появление снеговой шубы на теплообменнике определяется по разности температур хладагента и наружного воздуха и цикл оттаивания запускается только тогда, когда это необходимо.

    При определенных условиях крышный кондиционер оснащенный функцией  динамического оттаивания может работать в режиме теплового насоса в течение нескольких часов без оттаивания теплообменника.

    Использование динамического оттаивания позволяет экономить до 15 % годового потребления электроэнергии.

    [Перевод Интент]


    Тематики

    EN

    Англо-русский словарь нормативно-технической терминологии > dynamic defrost

  • 124 Paul, Robert William

    [br]
    b. 3 October 1869 Highbury, London, England
    d. 28 March 1943 London, England
    [br]
    English scientific instrument maker, inventor of the Unipivot electrical measuring instrument, and pioneer of cinematography.
    [br]
    Paul was educated at the City of London School and Finsbury Technical College. He worked first for a short time in the Bell Telephone Works in Antwerp, Belgium, and then in the electrical instrument shop of Elliott Brothers in the Strand until 1891, when he opened an instrument-making business at 44 Hatton Garden, London. He specialized in the design and manufacture of electrical instruments, including the Ayrton Mather galvanometer. In 1902, with a purpose-built factory, he began large batch production of his instruments. He also opened a factory in New York, where uncalibrated instruments from England were calibrated for American customers. In 1903 Paul introduced the Unipivot galvanometer, in which the coil was supported at the centre of gravity of the moving system on a single pivot. The pivotal friction was less than in a conventional instrument and could be used without accurate levelling, the sensitivity being far beyond that of any pivoted galvanometer then in existence.
    In 1894 Paul was asked by two entrepreneurs to make copies of Edison's kinetoscope, the pioneering peep-show moving-picture viewer, which had just arrived in London. Discovering that Edison had omitted to patent the machine in England, and observing that there was considerable demand for the machine from show-people, he began production, making six before the end of the year. Altogether, he made about sixty-six units, some of which were exported. Although Edison's machine was not patented, his films were certainly copyrighted, so Paul now needed a cinematographic camera to make new subjects for his customers. Early in 1895 he came into contact with Birt Acres, who was also working on the design of a movie camera. Acres's design was somewhat impractical, but Paul constructed a working model with which Acres filmed the Oxford and Cambridge Boat Race on 30 March, and the Derby at Epsom on 29 May. Paul was unhappy with the inefficient design, and developed a new intermittent mechanism based on the principle of the Maltese cross. Despite having signed a ten-year agreement with Paul, Acres split with him on 12 July 1895, after having unilaterally patented their original camera design on 27 May. By the early weeks of 1896, Paul had developed a projector mechanism that also used the Maltese cross and which he demonstrated at the Finsbury Technical College on 20 February 1896. His Theatrograph was intended for sale, and was shown in a number of venues in London during March, notably at the Alhambra Theatre in Leicester Square. There the renamed Animatographe was used to show, among other subjects, the Derby of 1896, which was won by the Prince of Wales's horse "Persimmon" and the film of which was shown the next day to enthusiastic crowds. The production of films turned out to be quite profitable: in the first year of the business, from March 1896, Paul made a net profit of £12,838 on a capital outlay of about £1,000. By the end of the year there were at least five shows running in London that were using Paul's projectors and screening films made by him or his staff.
    Paul played a major part in establishing the film business in England through his readiness to sell apparatus at a time when most of his rivals reserved their equipment for sole exploitation. He went on to become a leading producer of films, specializing in trick effects, many of which he pioneered. He was affectionately known in the trade as "Daddy Paul", truly considered to be the "father" of the British film industry. He continued to appreciate fully the possibilities of cinematography for scientific work, and in collaboration with Professor Silvanus P.Thompson films were made to illustrate various phenomena to students.
    Paul ended his involvement with film making in 1910 to concentrate on his instrument business; on his retirement in 1920, this was amalgamated with the Cambridge Instrument Company. In his will he left shares valued at over £100,000 to form the R.W.Paul Instrument Fund, to be administered by the Institution of Electrical Engineers, of which he had been a member since 1887. The fund was to provide instruments of an unusual nature to assist physical research.
    [br]
    Principal Honours and Distinctions
    Fellow of the Physical Society 1920. Institution of Electrical Engineers Duddell Medal 1938.
    Bibliography
    17 March 1903, British patent no. 6,113 (the Unipivot instrument).
    1931, "Some electrical instruments at the Faraday Centenary Exhibition 1931", Journal of Scientific Instruments 8:337–48.
    Further Reading
    Obituary, 1943, Journal of the Institution of Electrical Engineers 90(1):540–1. P.Dunsheath, 1962, A History of Electrical Engineering, London: Faber \& Faber, pp.
    308–9 (for a brief account of the Unipivot instrument).
    John Barnes, 1976, The Beginnings of Cinema in Britain, London. Brian Coe, 1981, The History of Movie Photography, London.
    BC / GW

    Biographical history of technology > Paul, Robert William

  • 125 disc type winding

    1. дисковая катушечная обмотка

     

    дисковая катушечная обмотка
    Катушечная обмотка, собранная из отдельно намотанных катушек, выполненных в виде плоских спиралей из одного провода или нескольких параллельных проводов
    [ ГОСТ 16110-82]

    Параллельные тексты EN-RU

    Aluminum or copper foil disk in high voltage winding.
    [ABB]

    Обмотка высшего напряжения дискового типа из алюминиевой или медной полосы.
    [Перевод Интент]


    Medium voltage, dry-type transformers may have their high voltage windings constructed using either the layer winding technique or the disc winding technique.

    In the disc winding, the required number of turns are wound in a number of horizontal discs spaced along the axial length of the coil. The conductor is usually rectangular in cross-section and the turns are wound in a radial direction, one on top of the other i.e. one turn per layer, until the required number of turns per disc has been wound. The conductor is then moved to the next disc and the process repeated until all turns have been wound. There is an air space, or duct, between each pair of discs. The disc winding requires insulation only on the conductor itself, no additional insulation is required between layers, as in the layer winding.

    4605
    Disc winding

    The disc wound high voltage winding is usually wound in two halves, in order that the required voltage adjustment taps may be positioned at the electrical center of the winding. In this way the magnetic, or effective length of the winding is maintained, irrespective of which tap is used, and therefore the magnetic balance between primary and secondary windings is always close to its optimum. This is essential to maintain the short circuit strength of the winding, and reduces the axial electromagnetic forces which arise when the windings are not perfectly balanced.


    4604
    Transformer with disc wound coils

    [Dry-Type disc wound transformers in medium voltage applications. Derek R. Foster I.Eng. MIIE]

    4607
    Computer aided winding process
    Рис. ABB



     

    Тематики

    Обобщающие термины

    Синонимы

    EN

    Англо-русский словарь нормативно-технической терминологии > disc type winding

  • 126 disc winding

    1. дисковая катушечная обмотка

     

    дисковая катушечная обмотка
    Катушечная обмотка, собранная из отдельно намотанных катушек, выполненных в виде плоских спиралей из одного провода или нескольких параллельных проводов
    [ ГОСТ 16110-82]

    Параллельные тексты EN-RU

    Aluminum or copper foil disk in high voltage winding.
    [ABB]

    Обмотка высшего напряжения дискового типа из алюминиевой или медной полосы.
    [Перевод Интент]


    Medium voltage, dry-type transformers may have their high voltage windings constructed using either the layer winding technique or the disc winding technique.

    In the disc winding, the required number of turns are wound in a number of horizontal discs spaced along the axial length of the coil. The conductor is usually rectangular in cross-section and the turns are wound in a radial direction, one on top of the other i.e. one turn per layer, until the required number of turns per disc has been wound. The conductor is then moved to the next disc and the process repeated until all turns have been wound. There is an air space, or duct, between each pair of discs. The disc winding requires insulation only on the conductor itself, no additional insulation is required between layers, as in the layer winding.

    4605
    Disc winding

    The disc wound high voltage winding is usually wound in two halves, in order that the required voltage adjustment taps may be positioned at the electrical center of the winding. In this way the magnetic, or effective length of the winding is maintained, irrespective of which tap is used, and therefore the magnetic balance between primary and secondary windings is always close to its optimum. This is essential to maintain the short circuit strength of the winding, and reduces the axial electromagnetic forces which arise when the windings are not perfectly balanced.


    4604
    Transformer with disc wound coils

    [Dry-Type disc wound transformers in medium voltage applications. Derek R. Foster I.Eng. MIIE]

    4607
    Computer aided winding process
    Рис. ABB



     

    Тематики

    Обобщающие термины

    Синонимы

    EN

    Англо-русский словарь нормативно-технической терминологии > disc winding

  • 127 disk type winding

    1. дисковая катушечная обмотка

     

    дисковая катушечная обмотка
    Катушечная обмотка, собранная из отдельно намотанных катушек, выполненных в виде плоских спиралей из одного провода или нескольких параллельных проводов
    [ ГОСТ 16110-82]

    Параллельные тексты EN-RU

    Aluminum or copper foil disk in high voltage winding.
    [ABB]

    Обмотка высшего напряжения дискового типа из алюминиевой или медной полосы.
    [Перевод Интент]


    Medium voltage, dry-type transformers may have their high voltage windings constructed using either the layer winding technique or the disc winding technique.

    In the disc winding, the required number of turns are wound in a number of horizontal discs spaced along the axial length of the coil. The conductor is usually rectangular in cross-section and the turns are wound in a radial direction, one on top of the other i.e. one turn per layer, until the required number of turns per disc has been wound. The conductor is then moved to the next disc and the process repeated until all turns have been wound. There is an air space, or duct, between each pair of discs. The disc winding requires insulation only on the conductor itself, no additional insulation is required between layers, as in the layer winding.

    4605
    Disc winding

    The disc wound high voltage winding is usually wound in two halves, in order that the required voltage adjustment taps may be positioned at the electrical center of the winding. In this way the magnetic, or effective length of the winding is maintained, irrespective of which tap is used, and therefore the magnetic balance between primary and secondary windings is always close to its optimum. This is essential to maintain the short circuit strength of the winding, and reduces the axial electromagnetic forces which arise when the windings are not perfectly balanced.


    4604
    Transformer with disc wound coils

    [Dry-Type disc wound transformers in medium voltage applications. Derek R. Foster I.Eng. MIIE]

    4607
    Computer aided winding process
    Рис. ABB



     

    Тематики

    Обобщающие термины

    Синонимы

    EN

    Англо-русский словарь нормативно-технической терминологии > disk type winding

  • 128 disk winding

    1. дисковая обмотка
    2. дисковая катушечная обмотка

     

    дисковая катушечная обмотка
    Катушечная обмотка, собранная из отдельно намотанных катушек, выполненных в виде плоских спиралей из одного провода или нескольких параллельных проводов
    [ ГОСТ 16110-82]

    Параллельные тексты EN-RU

    Aluminum or copper foil disk in high voltage winding.
    [ABB]

    Обмотка высшего напряжения дискового типа из алюминиевой или медной полосы.
    [Перевод Интент]


    Medium voltage, dry-type transformers may have their high voltage windings constructed using either the layer winding technique or the disc winding technique.

    In the disc winding, the required number of turns are wound in a number of horizontal discs spaced along the axial length of the coil. The conductor is usually rectangular in cross-section and the turns are wound in a radial direction, one on top of the other i.e. one turn per layer, until the required number of turns per disc has been wound. The conductor is then moved to the next disc and the process repeated until all turns have been wound. There is an air space, or duct, between each pair of discs. The disc winding requires insulation only on the conductor itself, no additional insulation is required between layers, as in the layer winding.

    4605
    Disc winding

    The disc wound high voltage winding is usually wound in two halves, in order that the required voltage adjustment taps may be positioned at the electrical center of the winding. In this way the magnetic, or effective length of the winding is maintained, irrespective of which tap is used, and therefore the magnetic balance between primary and secondary windings is always close to its optimum. This is essential to maintain the short circuit strength of the winding, and reduces the axial electromagnetic forces which arise when the windings are not perfectly balanced.


    4604
    Transformer with disc wound coils

    [Dry-Type disc wound transformers in medium voltage applications. Derek R. Foster I.Eng. MIIE]

    4607
    Computer aided winding process
    Рис. ABB



     

    Тематики

    Обобщающие термины

    Синонимы

    EN

     

    дисковая обмотка

    [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

    Англо-русский словарь нормативно-технической терминологии > disk winding

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