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Rail heating analysis for multishot EM gun operation

机译:多次电磁枪操作的轨道加热分析

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This paper describes a method of analyzing potential railgun concepts for their rail heating effects in multishot mode. The method is meant to provide a quick estimate of heating effects based on the geometry of the rails and containment and the performance specifications of each shot. First, a coupled electrical-mechanical simulation is run for the railgun in which the effects of current diffusion are included to calculate the effective rail resistance and associated heating as a function of axial position and time. This analysis is then expanded with an assumed current distribution (relative amount of current on top and back of rail compared with the front) to develop a first order temperature distribution in the rail cross section at any specified axial location. This axial section is then subjected to two-dimensional finite element analysis (FEA) to determine the heat redistribution between shots. A sample set of calculations is compared with a single shot experiment incorporating temperature probes in the rails. Finally, the utility of the method for multishot analysis is shown with two simulations, one with and one without active cooling in the rails.
机译:本文介绍了一种分析潜在枪炮概念的方法,以了解它们在多次射击模式下的轨道加热效果。该方法旨在根据轨道的几何形状和密闭性以及每次喷射的性能指标快速估算加热效果。首先,对轨道炮进行了机电耦合仿真,其中包括电流扩散的影响,以计算有效的轨道电阻和相关的热量随轴向位置和时间的变化。然后,利用假定的电流分布(在轨道的顶部和背面相对于前部的相对电流量)扩展此分析,以在任何指定的轴向位置的轨道截面中产生一阶温度分布。然后,对该轴向截面进行二维有限元分析(FEA),以确定射弹之间的热量重新分布。将计算样本集与在轨道中装有温度探测器的单次实验进行比较。最后,通过两种模拟显示了用于多次分析的方法的实用性,一种模拟在导轨上进行,一种模拟在导轨上未进行主动冷却。

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