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Two-dimensional magnetohydrodynamic equilibria with flow and studies of equilibrium fluctuations.

机译:具有流动的二维磁流体动力平衡和平衡波动的研究。

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摘要

A set of reduced ideal MHD (magnetohydrodynamic) equations is derived to investigate equilibria of plasmas with mass flow in general two-dimensional geometry. These equations provide a means of investigating the effects of flow on self-consistent equilibria in a number of new two-dimensional configurations such as helically symmetric configurations with helical axis, which are relevant to stellarators, as well as axisymmetric configurations. It is found that, as in the axisymmetric case, general two-dimensional flow equilibria are governed by a second-order quasi-linear partial differential equation for a magnetic flux function, which is coupled to a Bernoulli-type equation for the density. The equation for the magnetic flux function becomes hyperbolic at certain critical flow speeds which follow from its characteristic equation. When the equation is hyperbolic, shock phenomena may exist. As a particular example, unidirectional flow along the lines of symmetry is considered. In this case, the equation mentioned above is always elliptic. An exact solution for the case of helically symmetric unidirectional flow is found and studied to determine flow effects on the magnetic topology.; In the second part of this thesis, magnetic fluctuations due to the thermally excited MHD waves are investigated using fluid and kinetic models to describe a stable, uniform, compressible plasma in the range above the drift wave frequency and below the ion cyclotron frequency. It is shown that the fluid model with resistivity yields spectral densities which are roughly Lorentzian, exhibit equipartition with no apparent cutoff in wavenumber space and a Bohm-type diffusion coefficient. Under certain conditions, the ensuing transport may be comparable to classical values. For a phenomenological cutoff imposed on the spectrum, the typical fluctuating-to-equilibrium magnetic field ratio is found to be of the order of 10{dollar}sp{lcub}-10{rcub}{dollar}. Physical mechanisms to obtain decay profiles of the spectra with increasing wavenumber due to dispersion and/or different forms of damping are investigated analytically in a cold fluid approximation and numerically, with a kinetic model. The finite ion-gyrofrequency is identified as the leading effect determining the spectral profile shapes. It is found that the amplitude of fluctuations may be within a factor of the value suggested by the cold plasma model. The results from both models are presented and compared in low- and high-{dollar}beta{dollar} regimes.
机译:推导了一组简化的理想MHD(磁流体动力学)方程,以研究一般二维几何结构中具有质量流的等离子体的平衡。这些方程式提供了一种方法,可以研究流量对许多新的二维构型(例如,与螺旋体相关的具有螺旋轴的螺旋对称构型)以及轴对称构型中的自洽平衡的影响。发现,与轴对称情况一样,一般的二维流动平衡受磁通函数的二阶拟线性偏微分方程控制,该方程与密度的伯努利型方程耦合。根据其特性方程,在某些临界流速下,磁通函数的方程变为双曲线。当方程为双曲时,可能会出现冲击现象。作为一个特定示例,考虑了沿对称线的单向流动。在这种情况下,上述方程式始终是椭圆的。找到并研究了螺旋对称单向流的精确解,以确定对磁拓扑的流影响。在本文的第二部分中,使用流体和动力学模型研究了由热激发的MHD波引起的磁涨落,以描述在漂移波频率以上且离子回旋频率以下范围内的稳定,均匀,可压缩的等离子体。结果表明,具有电阻率的流体模型产生的光谱密度大致为洛伦兹式,表现出均分,波数空间中没有明显的截止,并且具有Bohm型扩散系数。在某些条件下,随后的传输可能与经典值相当。对于施加在频谱上的现象学截止,发现典型的波动与平衡磁场之比约为10 {dol} sp {lcub} -10 {rcub} {dollar}。在冷流体近似中,并通过动力学模型,以解析方式研究了获得因色散和/或不同形式的阻尼而导致波数增加的频谱衰减曲线的物理机制。有限的离子陀螺频率被确定为决定光谱轮廓形状的主要作用。发现波动幅度可能在冷等离子体模型建议的值的一个因素之内。在低和高{dollar} beta {dollar}体制下,介绍并比较了两种模型的结果。

著录项

  • 作者

    Agim, Yusuf Ziya.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Physics Fluid and Plasma.
  • 学位 Ph.D.
  • 年度 1989
  • 页码 144 p.
  • 总页数 144
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 等离子体物理学;
  • 关键词

  • 入库时间 2022-08-17 11:50:47

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