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Improvement of Current Filament Method and Its Application in Performance Analysis of Induction Coil Gun

机译:电流丝法的改进及其在感应线圈枪性能分析中的应用

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摘要

The performance analysis of induction coil guns is very useful in their experimental research and electromagnetic optimization design. This study improves the current filament method (CFM), which is commonly used in a coil gun's circuit simulation. In the improved CFM, each excitation coil was divided into small subcoils to improve the calculation precision of inductance in the equivalent electric network. In order to check the effect of the improvement and analyze the electromagnetic transient in coil-gun launch, the field-circuit method for induction coil guns was introduced. The field model is built based on the 3-D composite grid method (CGM). CGM uses two sets of mutual independent grids to discretize the solution region, the coarse grids discretize the global region, and the fine grids discretize the moving part. In every time step, instead of remeshing, it is only necessary to change the coordinates of nodes in fine grids. A three-stage coil gun's field-circuit model is built, and the validity of modification is proved by comparing the results of field-circuit model before and after the improvement of CFM.
机译:感应线圈枪的性能分析在其实验研究和电磁优化设计中非常有用。这项研究改进了电流灯丝方法(CFM),该方法通常在线圈枪的电路仿真中使用。在改进的CFM中,将每个励磁线圈分成小子线圈,以提高等效电网中电感的计算精度。为了检验改进效果并分析线圈枪发射过程中的电磁瞬变,引入了感应线圈枪的现场电路方法。现场模型是基于3-D复合网格方法(CGM)构建的。 CGM使用两组相互独立的网格离散化求解区域,粗网格离散全局区域,而细网格离散运动部分。在每个时间步中,都无需更改网格,只需更改细网格中节点的坐标即可。建立了三级线圈炮的现场电路模型,通过比较改进CFM前后的现场电路模型结果,验证了修改的有效性。

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