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高密度等离子体融断开关融蚀现象的粒子模拟研究 被引量:2

Particle simulation study of erosion phenomena in high-density plasma opening switch
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摘要 利用自行研制的 2 .5维全电磁柱坐标粒子模拟程序对高密度等离子体融断开关融断区域中的融蚀现象进行了模拟研究 ,详细地介绍了计算模型的建立以及复杂边界的算法处理。模拟结果表明在融断开关导通电流的最后阶段 ,由于磁压力、磁场渗透作用和非中性静电融蚀作用 ,在融断区域的阴极附近会形成一定宽度的真空鞘层。由于等离子体密度的下降以及初始真空鞘层的存在 ,使得即使只有较小的离子电流 ,融蚀机制也完全可以导致 A 2-1/2d Cylindrical full electromagnetic particle-in-cell code is used to simulate erosion phenomena of a high-density plasma opening switch. The computational model involving complex boundaries has been briefly introduced. The simulation results show that at the end of the conduction phase a vacuum sheath will form near a cathode, the formation mechanisms include deformation of plasma by magnetic pressure, the penetration of magnetic field and electrostatic erosion. Because of the descent of the plasma density and the existence of vacuum sheath, plasma opening switch can be opened by erosion mechanism on the condition of smaller ion current density.
出处 《强激光与粒子束》 EI CAS CSCD 北大核心 2001年第5期573-577,共5页 High Power Laser and Particle Beams
基金 国家自然科学基金 (10 0 85 0 0 2 19885 0 0 8) 国家 863惯性约束聚变领域 (863 -4 16-1)资助课题
关键词 粒子模拟 等离子体融断开关 静电融蚀 真空鞘层 复杂边界 导通电流 Computer simulation Erosion Plasma devices
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