强磁场对磁化等离子体点火过程的影响

Xianjun Yang, Hua Zhang, Z. Dong
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引用次数: 2

摘要

磁化等离子体聚变是近年来研究的热点,其中MTF(磁化靶聚变)是一种产生聚变功率的新途径。本文采用简单模型和一维MHD模拟方法研究磁化等离子体点火条件的参数空间。详细的分析和仿真结果表明,强磁场抑制了热传导的能量损失,增加了压缩过程中α粒子沉积的能量增益。得到了高温磁化等离子体达到点火条件的约束参数、磁场强度和等离子体温度的参数空间。在适当的外部脉冲功率下,用1D MHD获得了磁化等离子体的磁场结构和自由基温度分布。结果表明,一维MHD模拟计算的点火条件符合简单解析模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The effect of the strong magnetic field on the process of ignition in the magnetized plasma
The fusion of magnetized plasma is a hot topic in recent years, in which MTF (Magnetized Target Fusion) is a new approach to producing fusion power,. In this paper, we investigate the simple model as well as 1D MHD simulation to study the parameter space of the ignition condition for the magnetized plasma. The detailed analysis and simulation results show that the strong magnetic field will suppress the energy loss of the thermal conduction and increase the energy gain from alpha particle deposition during the compression. We obtain the parameter space of confinement parameter, magnetic field strength and the plasma temperature for high-temperature magnetized plasma to reach the ignition condition. The magnetic field configurations and radical temperature profiles of the magnetized plasma are obtained with 1D MHD with suitable external pulsed power. It shows that the ignition conditions computed from 1D MHD simulation is in accordance with the simple analytic model.
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