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首页> 外文期刊>Journal of Plasma Physics >Nonlinear evolution of perturbations in Hall MHD Z-pinch plasmas
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Nonlinear evolution of perturbations in Hall MHD Z-pinch plasmas

机译:霍尔MHD Z夹层等离子体中扰动的非线性演化

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摘要

The weakly nonlinear evolution of linearly stable perturbations in Hall magnetohydrodynamic plasmas is investigated by the method of strained Coordinates. Unperturbed self-similar equilibrium solutions for Z-pinches with time-dependent total current I similar to t(s), are subjected to sausage perturbations in the lossless short scale approximation in which the temporal and spatial variation of basic state is treated as slow The experimentally observed enhanced stability of the Z-pinches previously explained by the linear stability of the core in the interior of the unperturbed pinch is supported by the present nonlinear analysis. The nonlinear evolution results in an axially periodic series of wave breakings, which are confined to a thin shell around the stable pinch core. The wave breaking time may reach the levels of the pinch lifetime in the vicinity of the near-axis branch of the boundary neutral curve, where the inverse Hall parameter is less than unity and the Hall effects are most significant.
机译:用应变坐标法研究了霍尔磁流体动力学等离子体中线性稳定摄动的弱非线性演化。随时间变化的总电流I与t(s)相似的Z夹的无扰动自相似平衡解以无损小尺度近似方式经受香肠扰动,其中基本状态的时空变化被视为缓慢。实验上观察到的Z形夹点的增强的稳定性,以前通过无扰动的夹头内部的核的线性稳定性来解释,目前的非线性分析支持了这一点。非线性演化会导致一系列轴向周期性的波浪破裂,这些破裂被限制在稳定夹层核心周围的薄壳中。在边界中性曲线的近轴分支附近,断波时间可能达到收缩寿命的水平,其中霍尔反比参数小于1,霍尔效应最为明显。

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