RANCHERO同轴爆炸脉冲发电系统建模与分析

W. Atchison, J. Goforth, I. Lindemuth, R. Reinovsky
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引用次数: 1

摘要

同轴发电机系统设计的一个关键因素是几何结构的简单性。干净的圆柱形几何结构允许我们使用作者的1D和2D MHD建模代码对RANCHERO性能进行建模。数值模拟结果与RANCHERO系统在不同配置下的多次试验结果进行了比较。最近的1D计算与REOT-2数据的比较非常好,表明发电机在达到峰值电流的90-95%之前表现得非常像1D。在最后3毫米(70毫米)的磁通压缩过程中,计算电流和测量性能之间的差异可能是由于EOS对SF/sub / 6、2D效应或两者的影响。本研究考察了现有模型,并试图提供一个强大的集成模型,该模型可用于驱动设计研究,拍摄前后分析,并预测RANCHERO基础设计的细微变化的性能参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling and analysis of the RANCHERO coaxial explosive pulse power generator system
A key element in the design of a coaxial generator system is the simplicity of the geometry. The clean cylindrical geometry allows us a reasonable chance at modeling RANCHERO performance using the authors' 1D and 2D MHD modeling codes. The results of numerical simulations have been compare to several tests of the RANCHERO system in a variety of configurations. Recent comparisons of 1D calculations with the REOT-2 data have been extremely good and suggest that the generator is behaving in a very 1D like nature until reaching 90-95% of peak current. Differences between calculated current and measured performance during the last 3 mm (out of 70 mm) of flux compression may be a consequence of either the EOS for SF/sub 6/, 2D effects, or both. This study examines the existing models and attempt to provide a robust integrated model which can then be used to drive design studies, pre- and post-shot analysis, and predict performance parameters for slight variations of the base design of RANCHERO.
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