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Experimental and numerical study of shock wave propogation produced by underwater electrical wire explosion

机译:水下电线爆炸产生冲击波传播的实验和数值研究

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Underwater electrical wire explosion (UEWE) is supposed to be one of the most promising methods for the generation of strong shock waves (SSWs). A systematical study of SW propagation characteristics can be valuable reference for the industrial applications. In this work, a test platform was established, which included a pulse capacitor (6uF, 30kV), a three-electrode switch and a Cu wire (80mm length, 0.5mm diameter) placed in water. Voltage and current waveforms of the wire were obtained by voltage divider and Pearson coil, respectively. Two PCB 138A pressure gauges were used to measure SWs directly. In addition, a simplified model based on the principal assumption that the exploding wire instantly turned into uniform discharge plasma channel (DPC) after the onset of explosion was also proposed. The initial temperature of DPC was obtained by fitting the calculated pressures with experimental data. The injected energy of DPC was provided by the measured discharge current after wire explosion. Finally, the plasma properties of DPC and SW propagation characteristics were also discussed and analyzed.
机译:水下电线爆炸(UEWE)应该是产生强冲击波(SSW)的最有希望的方法之一。 SW传播特性的系统研究对于工业应用来说是有价值的参考。在这项工作中,建立了一个测试平台,其中包括脉冲电容器(6uf,30kV),三电极开关和在水中的Cu线(80mm长度,0.5mm)。通过分压器和Pearson线圈获得电线的电压和电流波形。使用两个PCB 138A压力表直接测量SWS。另外,还提出了一种基于爆炸线在爆炸发作后进入均匀放电等离子体通道(DPC)的主要假设的简化模型。通过用实验数据拟合计算的压力来获得DPC的初始温度。通过电线爆炸后测量的放电电流提供DPC的注入能量。最后,还讨论并分析了DPC和SW传播特性的血浆特性。

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