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Diagnostics of a converging strong shock wave generated by underwater electrical explosion of spherical wire array

机译:球形线阵列水下电爆炸产生的会聚强冲击波的诊断

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Summary form only given. The results of experimental studies of a converging shock wave generated by underwater electrical explosion of a spherical wire array are reported. Two high-current generators, sub-microsecond (~ 350 ns rise time and ~550 kA current amplitude) and microsecond (~1.1 μs rise time and ~300 kA current amplitude) timescale were used for wire array explosion. In the latter case, addition energy was transferred to the water flow by the imploding wire array due to the global pressure of the discharge current. In experiments, power and spectrum of self-light emission from an optical fiber, deformation of a copper tube and the time depended resistance of a carbon resistor placed in the equatorial plane of the wire array were measured to estimate the symmetry of the convergence. The results obtained were compared to the results of one dimensional hydrodynamic simulation, coupled with equation of states of water. The comparison showed that the shock wave keeps its uniformity along the major part of the convergence towards the implosion origin. The latter allows one to consider generation of water in extreme conditions (~6·10 Pa, ~17 eV, ~8 g/cm) in the vicinity of the implosion origin.
机译:仅提供摘要表格。报道了由球形线阵列的水下电爆炸产生的会聚冲击波的实验研究结果。两个大电流发生器,亚微秒(约350 ns的上升时间和〜550 kA电流幅度)和微秒(约1.1μs的上升时间和〜300 kA电流幅度)时间尺度用于线阵列爆炸。在后一种情况下,由于放电电流的总压力,内爆线阵列将附加能量转移到水流中。在实验中,测量了来自光纤的自发光的功率和光谱,铜管的变形以及放置在线阵列赤道平面中的碳电阻器的时间相关电阻,以估计会聚的对称性。将获得的结果与一维水动力模拟的结果以及水的状态方程进行比较。比较表明,冲击波在收敛到内爆源的大部分过程中保持均匀性。后者使人们可以考虑在内爆源附近在极端条件下(〜6·10 Pa,〜17 eV,〜8 g / cm)生成水。

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