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Generation of Electrohydraulic Shock Waves by Plasma-Ignited Energetic Materials: II. Influence of Wire Configuration and Stored Energy

机译:等离子点火的含能材料产生电液压冲击波:II。电线配置和储能的影响

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摘要

Electrohydraulic shock waves (SWs) have been used for shale gas exploitation in recent years. The traditional method to generate SWs is underwater pulsed discharge with a water gap load or an electrical wire (EW) load, but the SW energy is limited heavily by the stored energy. To obtain stronger SW, the EW explosion ignited energetic material (EM) load is proposed here. To obtain a good ignition performance, the influence of capacitor charging voltage, stored energy, wire diameter, and wire material (Cu and Mo) were studied. The results show that the higher the charging voltage is, the more effective the ignition is; liquidation and vaporization will affect the discharge but will not ignite the EM explosion effectively; the EMs given in this paper are more sensitive to the arc plasma. Besides, the nonrefractory copper is more suitable for the EM ignition than the refractory molybdenum.
机译:近年来,电液冲击波(SW)已用于页岩气开采。生成SW的传统方法是在水下脉冲放电中使用水隙负载或电线(EW)负载,但是SW能量受到存储能量的严重限制。为了获得更强的SW,这里提出了EW爆炸点燃的高能材料(EM)负载。为了获得良好的点火性能,研究了电容器充电电压,储能,导线直径和导线材料(铜和钼)的影响。结果表明,充电电压越高,点火效果越好。液化和汽化会影响排放,但不会有效地点燃EM爆炸;本文给出的EM对电弧等离子体更敏感。此外,非难熔铜比难熔钼更适合于EM点火。

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