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Kinetic theory of plasma adiabatic major radius compression in tokamaks

机译:托卡马克等离子体绝热主半径压缩的动力学理论

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In order to understand the individual charged particle behavior as well as plasma macroparameters (temperature, density, etc.) during the adiabatic major radius compression (R-compression) in a tokamak, a kinetic approach is used. The perpendicular electric field from the Ohm's law at zero resistivity is made use of in order to describe particle motion during the R-compression. Expressions for both passing and trapped particle energy and pitch angle change are derived for a plasma with high aspect ratio and circular magnetic surfaces. The particle behavior near the passing trapped boundary during the compression is studied to simulate the compression-induced collisional losses of alpha particles. Qualitative agreement is obtained with the alphas loss measurements in deuterium-tritium (D-T) experiments in the Tokamak Fusion Test Reactor (TFTR) [World Survey of Activities in Controlled Fusion Research [Nucl. Fusion special supplement (1991)] (Internation at Atomic Energy Agency, Vienna, 1991)]. The plasma macroparameters evolution at the R-compression is calculated by solving the gyroaveraged drift kinetic equation. (C) 1998 American Institute of Physics. [References: 16]
机译:为了了解托卡马克中绝热大半径压缩(R压缩)过程中各个带电粒子的行为以及血浆宏观参数(温度,密度等),使用了动力学方法。利用欧姆定律在零电阻率下的垂直电场来描述R压缩期间的粒子运动。对于具有高纵横比和圆形磁性表面的等离子体,导出了通过和捕获的粒子能量以及桨距角变化的表达式。研究了压缩过程中靠近通过的捕获边界的粒子行为,以模拟压缩导致的α粒子碰撞损失。在Tokamak聚变测试反应堆(TFTR)[受控聚变研究活动的全球调查[Nucl。核聚变特别补编(1991年)](国际原子能机构,维也纳,1991年)。通过求解陀螺平均漂移动力学方程,可以计算出R压缩下的等离子宏观参数的演化。 (C)1998美国物理研究所。 [参考:16]

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