COAXIAL DISK SHUNT FOR MEASURING IN THE HEAVY-CURRENT CHAIN OF HIGH-VOLTAGE GENERATOR OF STORM DISCHARGES OF IMPULSES OF CURRENT OF ARTIFICIAL LIGHTNING WITH THE INTEGRAL OF ACTION TO 15•106 J/OHM
Purpose. Description of construction and basic technical descriptions developed and created in Research & Design Institute «Molniya» National Technical University «Kharkiv Polytechnic Institute» high-voltage heavy-current coaxial disk shunt of type of SC-300M2, allowing reliably to measure t...
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Дата: | 2017 |
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Мова: | English Ukrainian |
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National Technical University "Kharkiv Polytechnic Institute" and State Institution “Institute of Technical Problems of Magnetism of the National Academy of Sciences of Ukraine”
2017
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Онлайн доступ: | http://eie.khpi.edu.ua/article/view/2074-272X.2017.5.07 |
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Назва журналу: | Electrical Engineering & Electromechanics |
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Electrical Engineering & Electromechanics |
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English Ukrainian |
topic |
powerful high-voltage generator of current of lightning measuring coaxial disk shunt measuring disk of shunt from stainless steel calculation estimation of parameters of shunt 621.3.022 621.319.53 621.317.32 мощный высоковольтный генератор тока молнии измерительный коаксиальный дисковый шунт измерительный диск шунта из нержавеющей стали расчетная оценка параметров шунта 621.3.022 621.319.53 621.317.32 |
spellingShingle |
powerful high-voltage generator of current of lightning measuring coaxial disk shunt measuring disk of shunt from stainless steel calculation estimation of parameters of shunt 621.3.022 621.319.53 621.317.32 мощный высоковольтный генератор тока молнии измерительный коаксиальный дисковый шунт измерительный диск шунта из нержавеющей стали расчетная оценка параметров шунта 621.3.022 621.319.53 621.317.32 Baranov, M. I. Kniaziev, V. V. Rudakov, S. V. COAXIAL DISK SHUNT FOR MEASURING IN THE HEAVY-CURRENT CHAIN OF HIGH-VOLTAGE GENERATOR OF STORM DISCHARGES OF IMPULSES OF CURRENT OF ARTIFICIAL LIGHTNING WITH THE INTEGRAL OF ACTION TO 15•106 J/OHM |
topic_facet |
powerful high-voltage generator of current of lightning measuring coaxial disk shunt measuring disk of shunt from stainless steel calculation estimation of parameters of shunt 621.3.022 621.319.53 621.317.32 мощный высоковольтный генератор тока молнии измерительный коаксиальный дисковый шунт измерительный диск шунта из нержавеющей стали расчетная оценка параметров шунта 621.3.022 621.319.53 621.317.32 |
format |
Article |
author |
Baranov, M. I. Kniaziev, V. V. Rudakov, S. V. |
author_facet |
Baranov, M. I. Kniaziev, V. V. Rudakov, S. V. |
author_sort |
Baranov, M. I. |
title |
COAXIAL DISK SHUNT FOR MEASURING IN THE HEAVY-CURRENT CHAIN OF HIGH-VOLTAGE GENERATOR OF STORM DISCHARGES OF IMPULSES OF CURRENT OF ARTIFICIAL LIGHTNING WITH THE INTEGRAL OF ACTION TO 15•106 J/OHM |
title_short |
COAXIAL DISK SHUNT FOR MEASURING IN THE HEAVY-CURRENT CHAIN OF HIGH-VOLTAGE GENERATOR OF STORM DISCHARGES OF IMPULSES OF CURRENT OF ARTIFICIAL LIGHTNING WITH THE INTEGRAL OF ACTION TO 15•106 J/OHM |
title_full |
COAXIAL DISK SHUNT FOR MEASURING IN THE HEAVY-CURRENT CHAIN OF HIGH-VOLTAGE GENERATOR OF STORM DISCHARGES OF IMPULSES OF CURRENT OF ARTIFICIAL LIGHTNING WITH THE INTEGRAL OF ACTION TO 15•106 J/OHM |
title_fullStr |
COAXIAL DISK SHUNT FOR MEASURING IN THE HEAVY-CURRENT CHAIN OF HIGH-VOLTAGE GENERATOR OF STORM DISCHARGES OF IMPULSES OF CURRENT OF ARTIFICIAL LIGHTNING WITH THE INTEGRAL OF ACTION TO 15•106 J/OHM |
title_full_unstemmed |
COAXIAL DISK SHUNT FOR MEASURING IN THE HEAVY-CURRENT CHAIN OF HIGH-VOLTAGE GENERATOR OF STORM DISCHARGES OF IMPULSES OF CURRENT OF ARTIFICIAL LIGHTNING WITH THE INTEGRAL OF ACTION TO 15•106 J/OHM |
title_sort |
coaxial disk shunt for measuring in the heavy-current chain of high-voltage generator of storm discharges of impulses of current of artificial lightning with the integral of action to 15•106 j/ohm |
title_alt |
КОАКСИАЛЬНЫЙ ДИСКОВЫЙ ШУНТ ДЛЯ ИЗМЕРЕНИЯ В СИЛЬНОТОЧНОЙ ЦЕПИ ВЫСОКОВОЛЬТНОГО ГЕНЕРАТОРА ГРОЗОВЫХ РАЗРЯДОВ ИМПУЛЬСОВ ТОКА ИСКУССТВЕННОЙ МОЛНИИ С ИНТЕГРАЛОМ ДЕЙСТВИЯ ДО 15•106 ДЖ/ОМ |
description |
Purpose. Description of construction and basic technical descriptions developed and created in Research & Design Institute «Molniya» National Technical University «Kharkiv Polytechnic Institute» high-voltage heavy-current coaxial disk shunt of type of SC-300M2, allowing reliably to measure the peak-temporal parameters (PTP) of impulses of current of artificial lightning in wide peak and temporal ranges with the integral of their action to 15·106 J/Ohm. Methodology. Electrophysics bases of high-voltage impulsive technique, scientific and technical bases of development and creation of high-voltage heavy-current impulsive electrical equipment, including the powerful generators of current of lightning (GCL), and also measuring methods in bit chains powerful high-voltage GCL AVP large impulsive currents of micro- and millisecond temporal ranges. Results. Offered and described new construction of measuring high-voltage heavy-current shunt, containing a measuring round disk from stainless steel easily soiled a 12Х18Н10Т thickness 2 mm and external diameter 80 mm. Experimental a way impulsive active resistance of RS≈0,08 mOhm of the indicated measuring disk and on his basis a calculation coefficient transformation is found of SS of coaxial disk shunt of type of SC-300M2, numeral equal in the concerted mode of operations of his coaxial cable line (CCL) SS≈2/RS≈25·103 A/V. It is rotined that it is expedient to use this value SS for measuring in the heavy-current bit chain of GCL ATP impulsive A- and repeated impulsive D- component of current of artificial lightning, and also ATP of aperiodic impulse of current of artificial lightning of temporal form 10 μc/350 μc. It is set that taking into account application in the end CCL of shunt of a co-ordinate divizor of voltage with two output coaxial sockets 1:1 (for SSA≈25·103 A/V) and 1:2 (SSC≈12,5·103 A/V) at measuring of ATP intermediate B-, protracted C- and shortened protracted C*- component of current of artificial lightning in GCL it is expedient to utillize a numeral value SS for the examined shunt, equal 12,5·103 A/V. Practical approbation and verification of capacity of the improved measuring coaxial disk shunt of type of SC-300M2 is executed in the high-voltage heavy-current bit chain of powerful GCL, forming on the actively-inductive loading of A- and C*- the components of current of artificial lightning with rationed ATP. Originality. Developed and created new high-voltage heavy-current measuring shunt of type of SC-300M2, allowing reliably to register rationed ATP of attenuation sinewave and aperiodic impulses of current of artificial lightning in the bit chains of powerful GCL with amplitude to ±220 кА and integral them action to 13,5·106 J/Ohm. On the measuring coaxial disk shunt of type of SC-300M2 from government metrology service of Ukraine the certificate of accordance of the set form is got. Practical value. Application of the created shunt of type of SC-300M2 in composition the high-voltage heavy-current bit chains of powerful GCL will allow in a certain measure to improve the metrology providing of tests of aviation and space-rocket technique, and also objects of electroenergy on stability to lightning. |
publisher |
National Technical University "Kharkiv Polytechnic Institute" and State Institution “Institute of Technical Problems of Magnetism of the National Academy of Sciences of Ukraine” |
publishDate |
2017 |
url |
http://eie.khpi.edu.ua/article/view/2074-272X.2017.5.07 |
work_keys_str_mv |
AT baranovmi coaxialdiskshuntformeasuringintheheavycurrentchainofhighvoltagegeneratorofstormdischargesofimpulsesofcurrentofartificiallightningwiththeintegralofactionto15106johm AT kniazievvv coaxialdiskshuntformeasuringintheheavycurrentchainofhighvoltagegeneratorofstormdischargesofimpulsesofcurrentofartificiallightningwiththeintegralofactionto15106johm AT rudakovsv coaxialdiskshuntformeasuringintheheavycurrentchainofhighvoltagegeneratorofstormdischargesofimpulsesofcurrentofartificiallightningwiththeintegralofactionto15106johm AT baranovmi koaksialʹnyjdiskovyjšuntdlâizmereniâvsilʹnotočnojcepivysokovolʹtnogogeneratoragrozovyhrazrâdovimpulʹsovtokaiskusstvennojmolniisintegralomdejstviâdo15106džom AT kniazievvv koaksialʹnyjdiskovyjšuntdlâizmereniâvsilʹnotočnojcepivysokovolʹtnogogeneratoragrozovyhrazrâdovimpulʹsovtokaiskusstvennojmolniisintegralomdejstviâdo15106džom AT rudakovsv koaksialʹnyjdiskovyjšuntdlâizmereniâvsilʹnotočnojcepivysokovolʹtnogogeneratoragrozovyhrazrâdovimpulʹsovtokaiskusstvennojmolniisintegralomdejstviâdo15106džom |
first_indexed |
2024-06-01T14:38:46Z |
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2024-06-01T14:38:46Z |
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1800669995207753728 |
spelling |
eiekhpieduua-article-1124802017-11-29T20:34:18Z COAXIAL DISK SHUNT FOR MEASURING IN THE HEAVY-CURRENT CHAIN OF HIGH-VOLTAGE GENERATOR OF STORM DISCHARGES OF IMPULSES OF CURRENT OF ARTIFICIAL LIGHTNING WITH THE INTEGRAL OF ACTION TO 15•106 J/OHM КОАКСИАЛЬНЫЙ ДИСКОВЫЙ ШУНТ ДЛЯ ИЗМЕРЕНИЯ В СИЛЬНОТОЧНОЙ ЦЕПИ ВЫСОКОВОЛЬТНОГО ГЕНЕРАТОРА ГРОЗОВЫХ РАЗРЯДОВ ИМПУЛЬСОВ ТОКА ИСКУССТВЕННОЙ МОЛНИИ С ИНТЕГРАЛОМ ДЕЙСТВИЯ ДО 15•106 ДЖ/ОМ Baranov, M. I. Kniaziev, V. V. Rudakov, S. V. powerful high-voltage generator of current of lightning measuring coaxial disk shunt measuring disk of shunt from stainless steel calculation estimation of parameters of shunt 621.3.022 621.319.53 621.317.32 мощный высоковольтный генератор тока молнии измерительный коаксиальный дисковый шунт измерительный диск шунта из нержавеющей стали расчетная оценка параметров шунта 621.3.022 621.319.53 621.317.32 Purpose. Description of construction and basic technical descriptions developed and created in Research & Design Institute «Molniya» National Technical University «Kharkiv Polytechnic Institute» high-voltage heavy-current coaxial disk shunt of type of SC-300M2, allowing reliably to measure the peak-temporal parameters (PTP) of impulses of current of artificial lightning in wide peak and temporal ranges with the integral of their action to 15·106 J/Ohm. Methodology. Electrophysics bases of high-voltage impulsive technique, scientific and technical bases of development and creation of high-voltage heavy-current impulsive electrical equipment, including the powerful generators of current of lightning (GCL), and also measuring methods in bit chains powerful high-voltage GCL AVP large impulsive currents of micro- and millisecond temporal ranges. Results. Offered and described new construction of measuring high-voltage heavy-current shunt, containing a measuring round disk from stainless steel easily soiled a 12Х18Н10Т thickness 2 mm and external diameter 80 mm. Experimental a way impulsive active resistance of RS≈0,08 mOhm of the indicated measuring disk and on his basis a calculation coefficient transformation is found of SS of coaxial disk shunt of type of SC-300M2, numeral equal in the concerted mode of operations of his coaxial cable line (CCL) SS≈2/RS≈25·103 A/V. It is rotined that it is expedient to use this value SS for measuring in the heavy-current bit chain of GCL ATP impulsive A- and repeated impulsive D- component of current of artificial lightning, and also ATP of aperiodic impulse of current of artificial lightning of temporal form 10 μc/350 μc. It is set that taking into account application in the end CCL of shunt of a co-ordinate divizor of voltage with two output coaxial sockets 1:1 (for SSA≈25·103 A/V) and 1:2 (SSC≈12,5·103 A/V) at measuring of ATP intermediate B-, protracted C- and shortened protracted C*- component of current of artificial lightning in GCL it is expedient to utillize a numeral value SS for the examined shunt, equal 12,5·103 A/V. Practical approbation and verification of capacity of the improved measuring coaxial disk shunt of type of SC-300M2 is executed in the high-voltage heavy-current bit chain of powerful GCL, forming on the actively-inductive loading of A- and C*- the components of current of artificial lightning with rationed ATP. Originality. Developed and created new high-voltage heavy-current measuring shunt of type of SC-300M2, allowing reliably to register rationed ATP of attenuation sinewave and aperiodic impulses of current of artificial lightning in the bit chains of powerful GCL with amplitude to ±220 кА and integral them action to 13,5·106 J/Ohm. On the measuring coaxial disk shunt of type of SC-300M2 from government metrology service of Ukraine the certificate of accordance of the set form is got. Practical value. Application of the created shunt of type of SC-300M2 in composition the high-voltage heavy-current bit chains of powerful GCL will allow in a certain measure to improve the metrology providing of tests of aviation and space-rocket technique, and also objects of electroenergy on stability to lightning. Описана конструкция разработанного и созданного измерительного коаксиального дискового шунта типа ШК-300М2, позволяющего с помощью коаксиальной кабельной линии связи и цифровых запоминающих осциллографов одновременно измерять амплитудно-временные параметры (АВП) основных компонент тока искусственной молнии, генерируемых высоковольтным генератором грозовых разрядов в соответствии с требованиями нормативных документов США SAE ARP 5412: 2013 и SAE ARP 5416: 2013. Приведены основные технические характеристики измерительного коаксиального дискового шунта типа ШК-300М2. Показано, что данный шунт позволяет измерять и АВП апериодического импульса тока временной формы 10 мкс/350 мкс, нормированный интеграл действия которого согласно требований международного стандарта IEC 62305-1: 2010 может численно составлять до 13,5·106 Дж/Ом. National Technical University "Kharkiv Polytechnic Institute" and State Institution “Institute of Technical Problems of Magnetism of the National Academy of Sciences of Ukraine” 2017-10-20 Article Article application/pdf application/pdf http://eie.khpi.edu.ua/article/view/2074-272X.2017.5.07 10.20998/2074-272X.2017.5.07 Electrical Engineering & Electromechanics; No. 5 (2017); 45-50 Электротехника и Электромеханика; № 5 (2017); 45-50 Електротехніка і Електромеханіка; № 5 (2017); 45-50 2309-3404 2074-272X en uk http://eie.khpi.edu.ua/article/view/2074-272X.2017.5.07/107215 http://eie.khpi.edu.ua/article/view/2074-272X.2017.5.07/107216 Copyright (c) 2017 M. I. Baranov, V. V. Kniaziev, S. V. Rudakov https://creativecommons.org/licenses/by-nc/4.0 |