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Pulsed-power and high energy plasma simulations for application to electrothermal-chemical guns

机译:应用于电热化学枪的脉冲功率和高能等离子体模拟

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摘要

Under U.S. Army ARDEC contract DAAA21-93-D1003, Princeton Combustion Research Laboratories (PCRL) has recently completed the development of a PC-based, end-to-end electrothermal-chemical (ETC) gun ballistic simulation code called PPIB. PPIB is a time-dependent lumped-paramter, electrothermal-chemical gun ballistic simulator, which has a one-dimensional plasma submodel. The code has been validated against a 4 MJ pulsed power system, 30-mm ETC plasma experiments, and plasma capillary calculations from the stand alone Powell code. In addition, results obtained for high energy plasma simulations are also provided. Included in this study are: (1) the electrical transfer efficiencies of various plasma capillary tubes; (2) the amount of energy partitioned into internal, kinetic, and work energy; and (3) the radiant energy partitioning of the plasma inside the capillary tube during the electrical discharge. The study is concluded with an estimate of the overall energy delivered for the entire process of power supply discharge to electrical plasma generation and radiation for a given test case.
机译:根据美国陆军ARDEC合同DAAA21-93-D1003,普林斯顿燃烧研究实验室(PCRL)最近完成了基于PC的端对端电热化学(ETC)枪弹道仿真代码PPIB的开发。 PPIB是随时间变化的集总参数电热化学枪弹道模拟器,具有一维等离子体子模型。该代码已针对4 MJ脉冲电源系统,30毫米ETC等离子实验以及通过独立的Powell代码进行的等离子体毛细管计算进行了验证。另外,还提供了针对高能等离子体模拟获得的结果。这项研究包括:(1)各种等离子体毛细管的电传递效率; (2)能量分为内能,动能和功能; (3)在放电过程中毛细管内部的等离子体的辐射能分配。该研究的结论是针对给定的测试用例,对从电源放电到电等离子体产生和辐射的整个过程中传递的总能量进行了估计。

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