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Development of an identification method of pressure anisotropy based on equilibrium analysis and magnetics

机译:基于平衡分析和磁学的压力各向异性识别方法的发展

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摘要

We evaluate the fluxes measured by the magnetic flux loops installed in LHD by using a three dimensional MHD equilibrium analysis code, ANIMEC, which enable us to directly determine the calibration function between the anisotropic pressure and the measured fluxes for the non-axisymmetric plasmas for the first time. The result indicates that the diamagnetic flux represents a nearly single-valued function of the beta perpendicular with respect to the field, and the saddle loop flux represents a nearly single-valued function of an equally weighted average of the beta values parallel and perpendicular to the field, regardless of the pressure anisotropy or the amount of energetic trapped particles. The values of the beta perpendicular to the field and the equal weighting averaged beta estimated by the single-valued functions (calibration functions) are investigated in order to clarify the magnitude of deviation from those original values, and the range of anisotropy where the beta value evaluated by the magnetic flux measurement is calculated within a 10% error.
机译:我们通过使用三维MHD平衡分析代码ANIMEC评估由安装在LHD中的磁通回路测量的通量,这使我们能够直接确定各向异性压力和非轴对称等离子体的测量通量之间的校准函数。第一次。结果表明,反磁通量表示垂直于磁场的β的几乎单值函数,而鞍环通量表示平行和垂直于β的β值的平均加权平均值的几乎单值函数。场,无论压力各向异性或高能俘获粒子的数量如何。研究了垂直于磁场的β值和由单值函数(校准函数)估计的相等加权平均β值,以阐明与这些原始值的偏差的大小以及β值的各向异性范围通过磁通量测量评估的结果在10%的误差范围内。

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