论文标题

四流体轴对称等离子体平衡模型,包括相对论电子和计算方法和结果

Four-Fluid Axisymmetric Plasma Equilibrium Model Including Relativistic Electrons and Computational Method and Results

论文作者

Ishida, Akio, Peng, Y. -K. Martin, Liu, Wenjun

论文摘要

最近,开发了非相关的多流体血浆轴对称平衡模型,以解释除热电子和离子流体外的能量电子流体。本文开发并报告了具有相对论能量电子的多流体等离子体的平衡公式。流体模型近似中的相对论效应可以以两种方式出现:由于较大的宏观流体速度可与光和大粒子的微观显微镜随机运动相当,如果温度与电子静息质量能相比或大,这将变得显着。发现相对论广义的角动量的轴向成分可用于描述相对论轴对称平衡。该公式应用于由相对论的能量电子流体,热电子流体和两个热离子物种(例如质子和硼离子)组成的四流体等离子体。与静电势一致的四流体密度表达可在计算中获得并应用。在无电磁eCRH持续的球形圆环等离子体中观察到的一个近似于四流体等离子体的平衡。将第一个示例的能量电子温度扩展到679KeV的第二个平衡揭示了显着的相对论效应。

A non-relativistic multi-fluid plasma axisymmetric equilibrium model was developed recently to account for the presence of an energetic electron fluid in addition to thermal electron and ion fluids. The equilibrium formulation of a multi-fluid plasma with relativistic energetic electrons is developed and reported in this paper. Relativistic effects in a fluid model approximation can appear in two ways: due to a large macroscopic fluid velocity comparable to the speed of light and large particle's microscopic random motion which becomes significant if the temperature becomes comparable to or larger than the electron rest mass-energy. It is found that the axial component of relativistic generalized angular momentum can be used to describe relativistic axisymmetric equilibrium. The formulation is applied to a four-fluid plasma composed of a relativistic energetic electron fluid, a thermal electron fluid, and fluids of two thermal ion species (e.g. proton and boron ions). The four-fluid density expression which is consistent with the electrostatic potential is obtained and applied in the computation. An example equilibrium approximating a four-fluid plasma recently observed in a solenoid-free ECRH sustained spherical torus plasma is calculated and presented. A second equilibrium that extends the energetic electron temperature of the first example to 679keV is calculated revealing significant relativistic effects.

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