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Loading Circuit Coupled Magnetohydrodynamic Simulation of Sample Configurations in Isentropic Compression Experiments

机译:各向同性压缩实验中样本结构的加载电路耦合磁流体动力学模拟

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Based on the 1-D elastic–plastic reactive hydrodynamic code Simplified Stretch Sin, a magnetohydrodynamic (MHD) version SSS/MHD has been developed. The new code is of multifield coupling, making use of the Resistance-Inductance-Capacitance circuit equations related to loading currents and others. To calculate MHD and circuit variables consistently and simultaneously, on the basis of Faraday’s law, the relations between loading currents and magnetic flux in configuration cavities, variation in total magnetic flux and back electromotive force, and an iteration procedure are employed. The sample configurations in magnetically driven isentropic compression experiments (ICEs) here consist of parallel slabs and cavities, in which the step targets are a pair of slabs symmetrical to loading electrodes and of the same sample material but different in thickness. Self-consistent MHD and circuit calculations for ICE step targets of aluminum, tantalum, and plastic binder explosive is reported in this paper. The results agree with the measured ones well, including loading current profiles and velocity histories on samples’ free surface or optics window interface. Since the input data for this code are geometric sizes, material parameters, and original circuit parameters only, its results are independent of measured or empirical data, and could be helpful in design and prediction of ICE or other experiments.
机译:基于一维弹塑性反应流体力学代码Simplified Stretch Sin,开发了磁流体动力学(MHD)版本的SSS / MHD。新的代码是多场耦合的,利用了与负载电流和其他相关的电阻-电感-电容电路方程。为了根据法拉第定律一致且同时地计算MHD和电路变量,采用了配置腔中负载电流与磁通量之间的关系,总磁通量变化和反电动势之间的关系,以及迭代程序。磁力驱动的等熵压缩实验(ICE)中的样品配置由平行的平板和型腔组成,其中台阶目标是一对与加载电极对称且具有相同样品材料但厚度不同的平板。本文报道了铝,钽和塑料粘结剂炸药的ICE台阶目标的自洽MHD和电路计算。结果与所测得的结果非常吻合,包括在样品的自由表面或光学窗口界面上加载电流曲线和速度历史记录。由于此代码的输入数据仅是几何尺寸,材料参数和原始电路参数,因此其结果与测量或经验数据无关,并且可能有助于ICE的设计和预测或其他实验。

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