Experimental Study on Pressure Wave Characteristics of High-Voltage Discharge in Water With Hemispherical Electrodes

被引:5
作者
Li, Bin [1 ]
Xue, Sheng [1 ,2 ]
Yuan, Liang [1 ,2 ]
机构
[1] Anhui Univ Sci & Technol, Sch Safety Sci & Engn, Huainan 232001, Peoples R China
[2] Anhui Univ Sci & Technol, State Key Lab Min Response & Disaster Prevent & C, Huainan 232001, Peoples R China
基金
中国国家自然科学基金;
关键词
Electrodes; Discharges (electric); Shock waves; Plasmas; High-voltage techniques; Voltage measurement; Coal; Electrodes spacing; plasma shock wave; peak pressure; pressure attenuation; high-voltage discharge in water; hemispherical electrode; ARC-DISCHARGE; IMPROVEMENT; PARAMETERS; ENERGY; COAL;
D O I
10.1109/ACCESS.2021.3075488
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
High-voltage pulse discharge in water is a promising technology to enhance the permeability of coal seam and rock mass by generating fractures within them. With the aim of improving the stability and efficiency of this technology, a high voltage electric pulse experiment system was constructed. The discharge electrodes in the experiment was hemispherical. The positive and negative electrodes were arranged on the same axis with adjustable spacing. Five sets of experiments were undertaken with the electrode spacing of 1mm, 2mm, 3mm, 4mm, and 5mm, respectively. In the experiments, an oscilloscope was used to analyze the voltage, current, and pressure wave signals. The experimental results of two typical voltage-current curves indicate that the peak pressure of plasma shock wave follows a parabolic trend with the electrode spacing, and there is an optimal electrode spacing for a given discharge voltage. The peak pressure of plasma shock wave tends to increase linearly with the increase of discharge voltage. The greater the electrode spacing, the greater the sensitivity of shock wave peak pressure to the discharge voltage. The shock wave peak pressure sensitivity of 5 mm discharge spacing is 4.7 times that of 1 mm discharge spacing. The experimental results for the voltages of 9 kV, 12 kV, and 24 kV with the optimal electrode spacing show that a power function is the best fit for the attenuation of the peak pressure of shock wave with its propagation distance.
引用
收藏
页码:87173 / 87181
页数:9
相关论文
共 37 条
[1]   The role of extracorporeal shock wave lithotripsy in the future of stone management [J].
Basulto-Martinez, Mario ;
Klein, Ilan ;
Gutierrez-Aceves, Jorge .
CURRENT OPINION IN UROLOGY, 2019, 29 (02) :96-102
[2]  
Bian D., 2018, SHOCK VIB, V2018, P1
[3]  
CHAUSSY C, 1980, LANCET, V2, P1265
[4]   Experimental study on an alternative oil stimulation technique for tight gas reservoirs based on dynamic shock waves generated by Pulsed Arc Electrohydraulic Discharges [J].
Chen, Wen ;
Maurel, Olivier ;
Reess, Thierry ;
De Ferron, Antoine Silvestre ;
La Borderie, Christian ;
Pijaudier-Cabot, Gilles ;
Rey-Bethbeder, Franck ;
Jacques, Antoine .
JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING, 2012, 88-89 :67-74
[5]   Modeling of pulsed spark discharge in water and its application to well cleaning [J].
Chung, Kyoung-Jae ;
Lee, Seok-geun ;
Hwang, Y. S. ;
Kim, C. Y. .
CURRENT APPLIED PHYSICS, 2015, 15 (09) :977-986
[6]  
[韩若愚 Han Ruoyu], 2019, [中国电机工程学报, Proceedings of the Chinese Society of Electrical Engineering], V39, P1251
[7]   One-step synthesis of carbon nanoflowers by arc discharge in water [J].
Kaufmann Junior, Claudir Gabriel ;
Sun Zampiva, Rubia Young ;
Anzanello, Michel J. ;
Alves, Annelise Kopp ;
Bergmann, Carlos Perez ;
Mortari, Sergio Roberto .
CERAMICS INTERNATIONAL, 2020, 46 (16) :26229-26232
[8]   Degradation of Verapamil hydrochloride in water by gliding arc discharge [J].
Krishna, Syam ;
Maslani, Alan ;
Izdebski, Tomasz ;
Horakova, Marta ;
Klementova, Sarka ;
Spatenka, Petr .
CHEMOSPHERE, 2016, 152 :47-54
[9]   Arc discharge-mediated disassembly of viral particles in water [J].
Lee, Eun-Jung ;
Lee, Wooseong ;
Kim, Minwoo ;
Choi, Eun Ha ;
Kim, Yun-Ji .
WATER RESEARCH, 2016, 102 :305-312
[10]  
[李恒乐 Li Hengle], 2015, [煤炭学报, Journal of China Coal Society], V40, P915