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Stable compression of a spherical tokamak plasma

机译:球形托卡马克等离子体的稳定压缩

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摘要

An analysis of toroidal plasma compression by a collapsing flux conserver reveals linearly stable scenarios of operation to high compression ratios. The resistive and ideal MHD stability is calculated in full toroidal geometry using the asymptotic matching method in realistic conditions. A time dependent MHD simulation of the compression is conducted to confirm the conservation principles used to calculate the equilibrium states for the analysis. The near edge current profile, controlled by toroidal field ramping during compression, is shown to be critical to stability due to coupling between poloidal components of the least stable mode. Two cases with slight differences in edge current are examined, one with a stable corridor to high compression and one without.
机译:通过塌陷通量保持器对环形等离子体压缩的分析揭示了在高压缩比情况下线性稳定的运行情况。在实际条件下,使用渐近匹配方法在完整的环形几何体中计算电阻和理想的MHD稳定性。进行随时间变化的MHD压缩模拟,以确认用于计算平衡态以进行分析的守恒原理。由于在最小稳定模式的极向分量之间的耦合,在压缩过程中由环形场倾斜控制的近边缘电流分布对稳定性至关重要。研究了两种情况,其边缘电流略有不同,一种情况具有稳定的高压通道,另一种情况没有。

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