在超高磁场下导线电爆炸中受感应方位电流加热形成高速径向等离子体流

Y. Adamyan, V. Vasilevsky, S.N. Kolgatin, G. Shneerson
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摘要

强纵向磁场下导线爆炸实验表明,强纵向磁场对导线爆炸的电学特性有影响。感应强度为50-70 T的纵向场的存在改变了爆炸的瞬间,并改变了电压对时间的定性依赖关系。以前已经证明了在纵向磁场中电爆炸产生的方位电流对等离子体产生必要的加热和加速的可能性。本文讨论了一个一维平面解析模型,该模型说明了在给定外场上膨胀时加速和传导介质加热的可能性并解释了其影响。本文还介绍了在真空中电爆炸时,在导线周围形成的低密度气体区域膨胀时观察到这种效应的实验描述。
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Forming of high-speed radial plasma flow due to its heating by induced azimuthal current in electrical explosion of wires in extra-high magnetic field
Experiments on wire explosions in strong longitudinal magnetic fields have shown that the electrical characteristics of conductor explosions are affected by the field. The presence of a longitudinal field with the induction 50-70 T shifts the moment of the explosion and changes the qualitative dependency of voltage vs. time. Previously the possibility of essential heating and acceleration of plasma caused by the generation of azimuthal currents at electrical explosion in longitudinal magnetic field has been shown. Here a one-dimensional analytic plane model illustrating the possibility and explaining the effects of acceleration and conducting media heating under its expansion across the given external field is discussed. Also the description of the experiments is presented in which this effect at the expansion of the low density gas area forming around the wire during its electrical explosion in the vacuum was observed.
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