CALCULATION AND EXPERIMENTAL DETERMINATION OF CRITICAL SECTIONS OF ELECTRIC WIRES AND CABLES IN THE CIRCUITS OF DEVICES OF HIGH-VOLTAGE HIGH-CURRENT PULSE TECHNIQUE

Purpose. Implementation of calculation and experimental determinations of critical sections and current densities in electric wires and cables of circuits of devices of high-voltage high-current impulse technique (HHIT), characterized flowing of pulse current ip(t) with different amplitude-temporal...

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Дата:2019
Автор: Baranov, M. I.
Формат: Стаття
Мова:English
Ukrainian
Опубліковано: National Technical University "Kharkiv Polytechnic Institute" and Аnatolii Pidhornyi Institute of Power Machines and Systems of NAS of Ukraine 2019
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Онлайн доступ:http://eie.khpi.edu.ua/article/view/2074-272X.2019.2.06
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Назва журналу:Electrical Engineering & Electromechanics

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Electrical Engineering & Electromechanics
id eiekhpieduua-article-164414
record_format ojs
institution Electrical Engineering & Electromechanics
baseUrl_str
datestamp_date 2019-04-16T12:30:41Z
collection OJS
language English
Ukrainian
topic high-voltage high-current pulse technique
electric wires and cables
calculation choice of critical sections of wires and cables in circuits of pulse technique
experiment
621.3.022
621.315.3
537.311.8
spellingShingle high-voltage high-current pulse technique
electric wires and cables
calculation choice of critical sections of wires and cables in circuits of pulse technique
experiment
621.3.022
621.315.3
537.311.8
Baranov, M. I.
CALCULATION AND EXPERIMENTAL DETERMINATION OF CRITICAL SECTIONS OF ELECTRIC WIRES AND CABLES IN THE CIRCUITS OF DEVICES OF HIGH-VOLTAGE HIGH-CURRENT PULSE TECHNIQUE
topic_facet high-voltage high-current pulse technique
electric wires and cables
calculation choice of critical sections of wires and cables in circuits of pulse technique
experiment
621.3.022
621.315.3
537.311.8
высоковольтная сильноточная импульсная техника
электрические провода и кабели
расчетный выбор критических сечений проводов и кабелей в цепях импульсной техники
эксперимент
621.3.022
621.315.3
537.311.8
format Article
author Baranov, M. I.
author_facet Baranov, M. I.
author_sort Baranov, M. I.
title CALCULATION AND EXPERIMENTAL DETERMINATION OF CRITICAL SECTIONS OF ELECTRIC WIRES AND CABLES IN THE CIRCUITS OF DEVICES OF HIGH-VOLTAGE HIGH-CURRENT PULSE TECHNIQUE
title_short CALCULATION AND EXPERIMENTAL DETERMINATION OF CRITICAL SECTIONS OF ELECTRIC WIRES AND CABLES IN THE CIRCUITS OF DEVICES OF HIGH-VOLTAGE HIGH-CURRENT PULSE TECHNIQUE
title_full CALCULATION AND EXPERIMENTAL DETERMINATION OF CRITICAL SECTIONS OF ELECTRIC WIRES AND CABLES IN THE CIRCUITS OF DEVICES OF HIGH-VOLTAGE HIGH-CURRENT PULSE TECHNIQUE
title_fullStr CALCULATION AND EXPERIMENTAL DETERMINATION OF CRITICAL SECTIONS OF ELECTRIC WIRES AND CABLES IN THE CIRCUITS OF DEVICES OF HIGH-VOLTAGE HIGH-CURRENT PULSE TECHNIQUE
title_full_unstemmed CALCULATION AND EXPERIMENTAL DETERMINATION OF CRITICAL SECTIONS OF ELECTRIC WIRES AND CABLES IN THE CIRCUITS OF DEVICES OF HIGH-VOLTAGE HIGH-CURRENT PULSE TECHNIQUE
title_sort calculation and experimental determination of critical sections of electric wires and cables in the circuits of devices of high-voltage high-current pulse technique
title_alt РАСЧЕТНО-ЭКСПЕРИМЕНТАЛЬНОЕ ОПРЕДЕЛЕНИЕ КРИТИЧЕСКИХ СЕЧЕНИЙ ЭЛЕКТРИЧЕСКИХ ПРОВОДОВ И КАБЕЛЕЙ В ЦЕПЯХ УСТРОЙСТВ ВЫСОКОВОЛЬТНОЙ СИЛЬНОТОЧНОЙ ИМПУЛЬСНОЙ ТЕХНИКИ
description Purpose. Implementation of calculation and experimental determinations of critical sections and current densities in electric wires and cables of circuits of devices of high-voltage high-current impulse technique (HHIT), characterized flowing of pulse current ip(t) with different amplitude-temporal parameters (ATPs). Methodology. Electrophysics bases of technique of high-voltage and large pulse currents, theoretical bases of electrical engineering, bases of electrical power energy, technique of high electric and magnetic fields, and also measuring technique. Results. The results of the developed electrical engineering approach are resulted in calculation choice on the condition of electric explosion (EE) in atmospheric air of current-carrying parts of cable-conductor products of critical sections of SCCi of the uninsulated wires, and also the insulated wires and cables with polyvinyl chloride (PVC), rubber (R) and polyethylene (PET) insulation with copper (aluminum) cores (shells) on which in the circuits of HHIT the pulse axial-flow current ip(t) flows with arbitrary ATPs. On the basis of this approach the results of choice of critical sections SCCi are shown for the indicated electric wires (cables) of power circuits of HHIT with pulse current, ATPs of which with amplitudes of Imp=(0.1-1000) kА change on a аperiodic law or law of attenuation of sine wave in nano-, micrо- and millisecond temporal ranges. The results of calculation estimation of critical amplitudes of current densities δCCi of -pulses of current ip(t) of the examined temporal shapes are presented in the indicated electric wires and cables of circuits of HHIT. By a calculation way it is set that critical amplitudes of current densities δCCi of pulse current ip(t) for its indicated temporal shapes in the copper (aluminum) cores of the uninsulated wires and insulated wires and cables with copper (aluminum) cores (shells), PVC, R and PET insulation for nanosecond range are numerically 1176 (878) kА/mm2, for the microsecond range 64 (48) kА/mm2 and for the millisecond range 1.29 (0.97) kА/mm2. By the powerful high-voltage generator of current of artificial lightning experimental verification of applicability of the offered calculation relations is executed for the choice of critical sections SCCi and amplitudes of current densities δCCi in wires (cables) at their EE. Originality. First by a calculation way for the specific temporal shapes of pulse currents ip(t) in the discharge circuits of HHIT, changing in nano-, micro- and millisecond temporal ranges with the wide change of the amplitudes Imp on an аperiodic law or law of attenuation of sine wave, the numeral values of critical sections SCCi and amplitudes of current densities δCCi are obtained for the uninsulated wires, insulated wires and cables with copper (aluminum) cores (shells), PVC, R and PET insulation. Practical value. Application of the obtained results is in practice of tests of objects of electrical power energy, aviation and space-rocket technique on resistibility to action of pulse currents ip(t) with different ATPs of natural (currents of the imitated lightning) and artificial (discharge currents of HHIT) origin will be instrumental in the increase of electro-thermal resistibility of the uninsulated wires, and also the insulated wires and cables with PVC, R and PET insulation of HHIT widely applied in power circuits. 
publisher National Technical University "Kharkiv Polytechnic Institute" and Аnatolii Pidhornyi Institute of Power Machines and Systems of NAS of Ukraine
publishDate 2019
url http://eie.khpi.edu.ua/article/view/2074-272X.2019.2.06
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spelling eiekhpieduua-article-1644142019-04-16T12:30:41Z CALCULATION AND EXPERIMENTAL DETERMINATION OF CRITICAL SECTIONS OF ELECTRIC WIRES AND CABLES IN THE CIRCUITS OF DEVICES OF HIGH-VOLTAGE HIGH-CURRENT PULSE TECHNIQUE РАСЧЕТНО-ЭКСПЕРИМЕНТАЛЬНОЕ ОПРЕДЕЛЕНИЕ КРИТИЧЕСКИХ СЕЧЕНИЙ ЭЛЕКТРИЧЕСКИХ ПРОВОДОВ И КАБЕЛЕЙ В ЦЕПЯХ УСТРОЙСТВ ВЫСОКОВОЛЬТНОЙ СИЛЬНОТОЧНОЙ ИМПУЛЬСНОЙ ТЕХНИКИ Baranov, M. I. high-voltage high-current pulse technique electric wires and cables calculation choice of critical sections of wires and cables in circuits of pulse technique experiment 621.3.022 621.315.3 537.311.8 высоковольтная сильноточная импульсная техника электрические провода и кабели расчетный выбор критических сечений проводов и кабелей в цепях импульсной техники эксперимент 621.3.022 621.315.3 537.311.8 Purpose. Implementation of calculation and experimental determinations of critical sections and current densities in electric wires and cables of circuits of devices of high-voltage high-current impulse technique (HHIT), characterized flowing of pulse current ip(t) with different amplitude-temporal parameters (ATPs). Methodology. Electrophysics bases of technique of high-voltage and large pulse currents, theoretical bases of electrical engineering, bases of electrical power energy, technique of high electric and magnetic fields, and also measuring technique. Results. The results of the developed electrical engineering approach are resulted in calculation choice on the condition of electric explosion (EE) in atmospheric air of current-carrying parts of cable-conductor products of critical sections of SCCi of the uninsulated wires, and also the insulated wires and cables with polyvinyl chloride (PVC), rubber (R) and polyethylene (PET) insulation with copper (aluminum) cores (shells) on which in the circuits of HHIT the pulse axial-flow current ip(t) flows with arbitrary ATPs. On the basis of this approach the results of choice of critical sections SCCi are shown for the indicated electric wires (cables) of power circuits of HHIT with pulse current, ATPs of which with amplitudes of Imp=(0.1-1000) kА change on a аperiodic law or law of attenuation of sine wave in nano-, micrо- and millisecond temporal ranges. The results of calculation estimation of critical amplitudes of current densities δCCi of -pulses of current ip(t) of the examined temporal shapes are presented in the indicated electric wires and cables of circuits of HHIT. By a calculation way it is set that critical amplitudes of current densities δCCi of pulse current ip(t) for its indicated temporal shapes in the copper (aluminum) cores of the uninsulated wires and insulated wires and cables with copper (aluminum) cores (shells), PVC, R and PET insulation for nanosecond range are numerically 1176 (878) kА/mm2, for the microsecond range 64 (48) kА/mm2 and for the millisecond range 1.29 (0.97) kА/mm2. By the powerful high-voltage generator of current of artificial lightning experimental verification of applicability of the offered calculation relations is executed for the choice of critical sections SCCi and amplitudes of current densities δCCi in wires (cables) at their EE. Originality. First by a calculation way for the specific temporal shapes of pulse currents ip(t) in the discharge circuits of HHIT, changing in nano-, micro- and millisecond temporal ranges with the wide change of the amplitudes Imp on an аperiodic law or law of attenuation of sine wave, the numeral values of critical sections SCCi and amplitudes of current densities δCCi are obtained for the uninsulated wires, insulated wires and cables with copper (aluminum) cores (shells), PVC, R and PET insulation. Practical value. Application of the obtained results is in practice of tests of objects of electrical power energy, aviation and space-rocket technique on resistibility to action of pulse currents ip(t) with different ATPs of natural (currents of the imitated lightning) and artificial (discharge currents of HHIT) origin will be instrumental in the increase of electro-thermal resistibility of the uninsulated wires, and also the insulated wires and cables with PVC, R and PET insulation of HHIT widely applied in power circuits.  Приведены результаты разработанного электротехнического подхода к расчетному выбору по условию электрического взрыва (ЭВ) токонесущих частей кабельно-проводниковой продукции критических сечений SCCi неизолированных проводов, а также изолированных проводов и кабелей с поливинилхлоридной (ПВХ), резиновой (Р) и полиэтиленовой (ПЭТ) изоляцией с медными (алюминиевыми) жилами (оболочками), по которым в цепях высоковольтной сильноточной импульсной техники (ВСИТ) протекает импульсный аксиальный ток ip(t) с произвольными амплитудно-временными параметрами (АВП). На основании этого подхода продемонстрированы результаты выбора критических сечений SCCi для указанных электрических проводов (кабелей) силовых цепей ВСИТ с импульсным током, АВП которого с амплитудами Imp=(0,1-1000) кА изменяются по апериодическому закону или закону затухающей синусоиды в нано-, микро- и миллисекундному временных диапазонах. Представлены результаты расчетной оценки критических амплитуд плотностей δCCi импульсов тока ip(t) рассматриваемых временных форм в указанных электрических проводах и кабелях цепей ВСИТ. Выполнена экспериментальная проверка работоспособности предлагаемых расчетных соотношений для выбора сечений SCCi и плотностей δCCi тока в проводах (кабелях) при их ЭВ. Полученные данные будут способствовать обеспечению электротермической стойкости электрических неизолированных проводов, а также проводов и кабелей с ПВХ, Р и ПЭТ изоляцией, широко применяемых в силовых цепях ВСИТ.  National Technical University "Kharkiv Polytechnic Institute" and Аnatolii Pidhornyi Institute of Power Machines and Systems of NAS of Ukraine 2019-04-16 Article Article Peer-reviewed Article application/pdf application/pdf http://eie.khpi.edu.ua/article/view/2074-272X.2019.2.06 10.20998/2074-272X.2019.2.06 Electrical Engineering & Electromechanics; No. 2 (2019); 39-46 Электротехника и Электромеханика; № 2 (2019); 39-46 Електротехніка і Електромеханіка; № 2 (2019); 39-46 2309-3404 2074-272X en uk http://eie.khpi.edu.ua/article/view/2074-272X.2019.2.06/163474 http://eie.khpi.edu.ua/article/view/2074-272X.2019.2.06/163475 Copyright (c) 2019 M. I. Baranov https://creativecommons.org/licenses/by-nc/4.0