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Equilibrium Reconstruction of Anisotropic Pressure Profile in the Levitated Dipole Experiment

机译:悬浮偶极子实验中各向异性压力分布的平衡重构

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摘要

The Levitated Dipole Experiment (LDX) is an innovative confinement concept that uses an internal superconducting dipole field to confine plasma. Plasma equilibrium is calculated by a least-squares fit of an anisotropic pressure model to magnetic measurements constrained by X-ray images. Reconstructions have been done for different heating schemes using two-frequency electron cyclotron heating at 2.45 and 6.4 GHz. Results show that a maximum local β ~ 20% has been achieved using two frequency heating at a combined full power of 5 kW. Analysis of the reconstruction results shows that the magnetic sensors are sensitive primarily to changes in the plasma dipole moment. This is partly due to the fact that the dipole current decreases as the plasma current increases (as required by flux conservation through the superconducting dipole) and the magnetic sensors detect the sum of these changes. This paper will present details of the reconstruction procedure and describe how new magnetic sensors will aid in resolving the pressure profile more accurately.
机译:悬浮偶极子实验(LDX)是一种创新的限制概念,它使用内部超导偶极子场限制等离子体。通过各向异性压力模型与X射线图像约束的磁测量值的最小二乘拟合来计算等离子体平衡。使用2.45和6.4 GHz的双频电子回旋加速器加热,已经针对不同的加热方案进行了重构。结果表明,在5 kW的总全功率下使用两个频率加热时,已达到最大局部β〜20%。对重建结果的分析表明,磁传感器主要对等离子体偶极矩的变化敏感。这部分是由于以下事实:偶极子电流随等离子体电流的增加而减小(这是通过超导偶极子的通量守恒所要求的),并且磁传感器检测到这些变化的总和。本文将介绍重建程序的详细信息,并描述新型磁传感器将如何帮助更准确地解决压力分布问题。

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