PIEZOELECTRIC WAVEGUIDE SENSOR FOR MEASURING PULSE PRESSURE IN CLOSED LIQUID VOLUMES AT HIGH VOLTAGE ELECTRIC DISCHARGE

Purpose. Investigations of the characteristics of pressure waves presuppose the registration of the total profile of the pressure wave at a given point in space. For these purposes, various types of «pressure to the electrical signal» transmitters (sensors) are used. Most of the common sensors are u...

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Дата:2017
Автори: Zhekul, V. G., Smirnov, O. P., Taftaj, E. I., Khvoshchan, O. V., Shvets, I. S.
Формат: Стаття
Мова:English
Ukrainian
Опубліковано: 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.2017.5.09
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Назва журналу:Electrical Engineering & Electromechanics

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Electrical Engineering & Electromechanics
id eiekhpieduua-article-112483
record_format ojs
institution Electrical Engineering & Electromechanics
collection OJS
language English
Ukrainian
topic piezoelectric sensor
pulse pressure
electrical characteristics
high-voltage discharge
closed volume of liquid
53.082.73
пьезоэлектрический датчик
импульсное давление
электрические характеристики
высоковольтный разряд
замкнутый объем жидкости
53.082.73
spellingShingle piezoelectric sensor
pulse pressure
electrical characteristics
high-voltage discharge
closed volume of liquid
53.082.73
пьезоэлектрический датчик
импульсное давление
электрические характеристики
высоковольтный разряд
замкнутый объем жидкости
53.082.73
Zhekul, V. G.
Smirnov, O. P.
Taftaj, E. I.
Khvoshchan, O. V.
Shvets, I. S.
PIEZOELECTRIC WAVEGUIDE SENSOR FOR MEASURING PULSE PRESSURE IN CLOSED LIQUID VOLUMES AT HIGH VOLTAGE ELECTRIC DISCHARGE
topic_facet piezoelectric sensor
pulse pressure
electrical characteristics
high-voltage discharge
closed volume of liquid
53.082.73
пьезоэлектрический датчик
импульсное давление
электрические характеристики
высоковольтный разряд
замкнутый объем жидкости
53.082.73
format Article
author Zhekul, V. G.
Smirnov, O. P.
Taftaj, E. I.
Khvoshchan, O. V.
Shvets, I. S.
author_facet Zhekul, V. G.
Smirnov, O. P.
Taftaj, E. I.
Khvoshchan, O. V.
Shvets, I. S.
author_sort Zhekul, V. G.
title PIEZOELECTRIC WAVEGUIDE SENSOR FOR MEASURING PULSE PRESSURE IN CLOSED LIQUID VOLUMES AT HIGH VOLTAGE ELECTRIC DISCHARGE
title_short PIEZOELECTRIC WAVEGUIDE SENSOR FOR MEASURING PULSE PRESSURE IN CLOSED LIQUID VOLUMES AT HIGH VOLTAGE ELECTRIC DISCHARGE
title_full PIEZOELECTRIC WAVEGUIDE SENSOR FOR MEASURING PULSE PRESSURE IN CLOSED LIQUID VOLUMES AT HIGH VOLTAGE ELECTRIC DISCHARGE
title_fullStr PIEZOELECTRIC WAVEGUIDE SENSOR FOR MEASURING PULSE PRESSURE IN CLOSED LIQUID VOLUMES AT HIGH VOLTAGE ELECTRIC DISCHARGE
title_full_unstemmed PIEZOELECTRIC WAVEGUIDE SENSOR FOR MEASURING PULSE PRESSURE IN CLOSED LIQUID VOLUMES AT HIGH VOLTAGE ELECTRIC DISCHARGE
title_sort piezoelectric waveguide sensor for measuring pulse pressure in closed liquid volumes at high voltage electric discharge
title_alt ПЬЕЗОЭЛЕКТРИЧЕСКИЙ ВОЛНОВОДНЫЙ ДАТЧИК ДЛЯ ИЗМЕРЕНИЯ ИМПУЛЬСНОГО ДАВЛЕНИЯ В ЗАМКНУТЫХ ОБЪЕМАХ ЖИДКОСТИ ПРИ ВЫСОКОВОЛЬТНОМ ЭЛЕКТРИЧЕСКОМ РАЗРЯДЕ
description Purpose. Investigations of the characteristics of pressure waves presuppose the registration of the total profile of the pressure wave at a given point in space. For these purposes, various types of «pressure to the electrical signal» transmitters (sensors) are used. Most of the common sensors are unsuitable for measuring the pulse pressure in a closed water volume at high hydrostatic pressures, in particular to study the effect of a powerful high-voltage pulse discharge on increasing the inflow of minerals and drinking water in wells. The purpose of the work was to develop antijamming piezoelectric waveguide sensor for measuring pulse pressure at a close distance from a high-voltage discharge channel in a closed volume of a liquid. Methodology. We have applied the calibration method as used as a secondary standard, the theory of electrical circuits. Results. We have selected the design and the circuit solution of the waveguide pressure sensor. We have developed a waveguide pulse-pressure sensor DTX-1 with a measuring loop. This sensor makes it possible to study the spectral characteristics of pressure waves of high-voltage pulse discharge in closed volumes of liquid at a hydrostatic pressure of up to 20 MPa and a temperature of up to 80 °C. The sensor can be used to study pressure waves with a maximum amplitude value of up to 150 MPa and duration of up to 80 µs. According to the results of the calibration, the sensitivity of the developed sensor DTX-1 with a measuring loop is 0.0346 V/MPa. Originality. We have further developed the theory of designing the waveguide piezoelectric pulse pressure sensors for measuring the pulse pressure at a close distance from a high-voltage discharge channel in a closed fluid volume by controlling the attenuation of the amplitude of the pressure signal. Practical value. We have developed, created, calibrated, used in scientific research waveguide pressure pulse sensors DTX-1. We propose sensors DTX-1 for sale in Ukraine and abroad. Sensors DTX-1 can be used to study pressure waves with a maximum amplitude value of up to 150 MPa in closed fluid volumes at a hydrostatic pressure of up to 20 MPa and a temperature of up to 80 °C.
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.2017.5.09
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AT khvoshchanov pʹezoélektričeskijvolnovodnyjdatčikdlâizmereniâimpulʹsnogodavleniâvzamknutyhobʺemahžidkostiprivysokovolʹtnomélektričeskomrazrâde
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first_indexed 2024-06-01T14:38:47Z
last_indexed 2024-06-01T14:38:47Z
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spelling eiekhpieduua-article-1124832017-11-29T20:34:18Z PIEZOELECTRIC WAVEGUIDE SENSOR FOR MEASURING PULSE PRESSURE IN CLOSED LIQUID VOLUMES AT HIGH VOLTAGE ELECTRIC DISCHARGE ПЬЕЗОЭЛЕКТРИЧЕСКИЙ ВОЛНОВОДНЫЙ ДАТЧИК ДЛЯ ИЗМЕРЕНИЯ ИМПУЛЬСНОГО ДАВЛЕНИЯ В ЗАМКНУТЫХ ОБЪЕМАХ ЖИДКОСТИ ПРИ ВЫСОКОВОЛЬТНОМ ЭЛЕКТРИЧЕСКОМ РАЗРЯДЕ Zhekul, V. G. Smirnov, O. P. Taftaj, E. I. Khvoshchan, O. V. Shvets, I. S. piezoelectric sensor pulse pressure electrical characteristics high-voltage discharge closed volume of liquid 53.082.73 пьезоэлектрический датчик импульсное давление электрические характеристики высоковольтный разряд замкнутый объем жидкости 53.082.73 Purpose. Investigations of the characteristics of pressure waves presuppose the registration of the total profile of the pressure wave at a given point in space. For these purposes, various types of «pressure to the electrical signal» transmitters (sensors) are used. Most of the common sensors are unsuitable for measuring the pulse pressure in a closed water volume at high hydrostatic pressures, in particular to study the effect of a powerful high-voltage pulse discharge on increasing the inflow of minerals and drinking water in wells. The purpose of the work was to develop antijamming piezoelectric waveguide sensor for measuring pulse pressure at a close distance from a high-voltage discharge channel in a closed volume of a liquid. Methodology. We have applied the calibration method as used as a secondary standard, the theory of electrical circuits. Results. We have selected the design and the circuit solution of the waveguide pressure sensor. We have developed a waveguide pulse-pressure sensor DTX-1 with a measuring loop. This sensor makes it possible to study the spectral characteristics of pressure waves of high-voltage pulse discharge in closed volumes of liquid at a hydrostatic pressure of up to 20 MPa and a temperature of up to 80 °C. The sensor can be used to study pressure waves with a maximum amplitude value of up to 150 MPa and duration of up to 80 µs. According to the results of the calibration, the sensitivity of the developed sensor DTX-1 with a measuring loop is 0.0346 V/MPa. Originality. We have further developed the theory of designing the waveguide piezoelectric pulse pressure sensors for measuring the pulse pressure at a close distance from a high-voltage discharge channel in a closed fluid volume by controlling the attenuation of the amplitude of the pressure signal. Practical value. We have developed, created, calibrated, used in scientific research waveguide pressure pulse sensors DTX-1. We propose sensors DTX-1 for sale in Ukraine and abroad. Sensors DTX-1 can be used to study pressure waves with a maximum amplitude value of up to 150 MPa in closed fluid volumes at a hydrostatic pressure of up to 20 MPa and a temperature of up to 80 °C. На основании проведенного анализа рынка приборов, измеряющих импульсное давление, выбрана конструкция и схемное решение помехоустойчивого волноводного датчика давления, обеспечивающего стабильность и достоверность показаний на близком расстоянии от канала высоковольтного электрического разряда в замкнутом объеме жидкости. Разработан волноводный датчик импульсного давления ДТХ-1 с измерительным шлейфом, позволяющий исследовать спектральные характеристики волн давления в закрытых объемах жидкости при гидростатическом давлении до 20 МПа и температуре до 80 °С. Датчик может быть применен для изучения волн давления с максимальным амплитудным значением до 150 МПа и длительностью до 80 мкс. Согласно результатам тарировки с использованием вторичного эталона, чувствительность датчика ДТХ-1 с измерительным трактом – 0,0346 В/МПа. National Technical University "Kharkiv Polytechnic Institute" and State Institution “Institute of Technical Problems of Magnetism of the National Academy of Sciences of Ukraine” 2017-10-21 Article Article application/pdf application/pdf http://eie.khpi.edu.ua/article/view/2074-272X.2017.5.09 10.20998/2074-272X.2017.5.09 Electrical Engineering & Electromechanics; No. 5 (2017); 55-59 Электротехника и Электромеханика; № 5 (2017); 55-59 Електротехніка і Електромеханіка; № 5 (2017); 55-59 2309-3404 2074-272X en uk http://eie.khpi.edu.ua/article/view/2074-272X.2017.5.09/107219 http://eie.khpi.edu.ua/article/view/2074-272X.2017.5.09/107220 Copyright (c) 2017 V. G. Zhekul, O. P. Smirnov, E. I. Taftaj, O. V. Khvoshchan, I. S. Shvets https://creativecommons.org/licenses/by-nc/4.0