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Formation of a long-lived hot field reversed configuration by dynamically merging two colliding high-? compact toroids

机译:通过动态合并两个相撞的高阻抗热电偶,形成一个长寿命的反向热配置。紧凑型环形

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摘要

A high temperature field reversed configuration (FRC) has been produced in the newly built, world’s largest compact toroid (CT) facility, C-2, by colliding and merging two high-β CTs produced using the advanced field-reversed θ-pinch technology. This long-lived, stable merged state exhibits the following key properties: (1) apparent increase in the poloidal flux from the first pass to the final merged state, (2) significantly improved confinement compared to conventional θ-pinch FRCs with flux decay rates approaching classical values in some cases, (3) strong conversion from kinetic energy into thermal energy with total temperature (T_e?+?T_i) exceeding 0.5 keV, predominantly into the ion channel. Detailed modeling using a new 2-D resistive magnetohydrodynamic (MHD) code, LamyRidge, has demonstrated, for the first time, the formation, translation, and merging/reconnection dynamics of such extremely high-β plasmas.
机译:通过碰撞和合并使用先进的场反转θ夹点技术生产的两个高βCT,在新建的世界上最大的紧凑型环形(CT)设施C-2中生产了高温场反转配置(FRC)。 。这种长寿命,稳定的合并状态具有以下关键特性:(1)从第一遍到最终合并状态的极向通量明显增加,(2)与通量衰减率较传统的θ捏合FRC相比,约束度得到了显着改善在某些情况下接近经典值,(3)从动能到热能的强转换,总温度(T_e?+ΔT_i)超过0.5 keV,主要进入离子通道。使用新的2-D电阻磁流体动力学(MHD)代码LamyRidge进行的详细建模首次证明了这种极高β-等离子体的形成,平移和合并/重新连接动力学。

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