Research on the Effects of an Electrode Drill Bit during the Rock Drilling Process by High- Voltage Electric Pulse

被引:0
作者
Duan, Longchen [1 ,2 ]
Liu, Xianao [1 ]
Li, Changping [3 ]
Kang, Jifeng [1 ]
Zhang, Di [4 ]
Yuan, Zhong [4 ]
机构
[1] China Univ Geosci, Fac Engn, Wuhan, Peoples R China
[2] China Univ Geosci, Natl Ctr Int Res Deep Earth Drilling & Resource De, Wuhan, Peoples R China
[3] China Univ Geosci, Sch Mech Engn & Elect Informat, Wuhan, Peoples R China
[4] China Univ Geosci, Sch Future Technol, Wuhan, Peoples R China
来源
SPE JOURNAL | 2024年 / 29卷 / 06期
基金
中国国家自然科学基金;
关键词
COPPER ORES; PRECONCENTRATION; TECHNOLOGY;
D O I
10.2118/219735-PA
中图分类号
TE [石油、天然气工业];
学科分类号
0820 ;
摘要
High- voltage electric pulse rock- breaking (HVEPB) has proved to be a novel and inexpensive method of breaking rock regardless of rock composition, but the design of the electrode drill bit lacks a theoretical basis. In this paper, we first establish a plasma channel model for electric breakdown and a numerical rock- breaking model for HVEPB, which can simulate the rock electrical breakdown plasma channel and the effect of different electrode drill bits on HVEPB. Second, we analyze the effects of different electrode arrangement structures and high- voltage electrode angles on plasma channels and the effects of internal cracks and rock- breaking processes through numerical simulation. Finally, we describe HVEPB experiments conducted using electrode drill bits with different electrode arrangement structures and high- voltage electrode angles, and with the boreholes reconstructed in three dimensions to analyze the effects of different electrode arrangement structures and high- voltage electrode angles on HVEPB drilling. The results show that the effects of the electrode drill bits on HVEPB are reflected mainly in the difference between the plasma channel and shock wave. Different electrode arrangement structures and high- voltage electrode angles result in different electric fields and energy utilization effi ciencies within the rock, resulting in different shock waves and differences in the depth, shapes, and penetration of the plasma channels. The simulations and experimental studies in this paper can guide and optimize the design of the discharge tool to upgrade the drilling effi ciency of HVEPB.
引用
收藏
页码:3003 / 3016
页数:14
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