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首页> 外文期刊>Physics of plasmas >Hall effect in a strong magnetic field: Direct comparisons of compressible magnetohydrodynamics and the reduced Hall magnetohydrodynamic equations
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Hall effect in a strong magnetic field: Direct comparisons of compressible magnetohydrodynamics and the reduced Hall magnetohydrodynamic equations

机译:强磁场中的霍尔效应:可压缩磁流体力学和简化霍尔磁流体力学方程式的直接比较

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摘要

In this work we numerically test a model of Hall magnetohydrodynamics in the presence of a strong mean magnetic field: the reduced Hall magnetohydrodynamic model (RHMHD) derived by [Gomez, Phys. Plasmas 15, 102303 (2008)] with the addition of weak compressible effects. The main advantage of this model lies in the reduction of computational cost. Nevertheless, up until now the degree of agreement with the original Hall MHD system and the range of validity in a regime of turbulence were not established. In this work direct numerical simulations of three-dimensional Hall MHD turbulence in the presence of a strong mean magnetic field are compared with simulations of the weak compressible RHMHD model. The results show that the degree of agreement is very high (when the different assumptions of RHMHD, such as spectral anisotropy, are satisfied). Nevertheless, when the initial conditions are isotropic but the mean magnetic field is maintained strong, the results differ at the beginning but asymptotically reach a good agreement at relatively short times. We also found evidence that the compressibility still plays a role in the dynamics of these systems, and the weak compressible RHMHD model is able to capture these effects. In conclusion the weak compressible RHMHD model is a valid approximation of the Hall MHD turbulence in the relevant physical context.
机译:在这项工作中,我们对存在强平均磁场的霍尔磁流体动力学模型进行了数值测试:由[Gomez,Phys。 Plasmas 15,102303(2008)],并增加了弱的可压缩效果。该模型的主要优点在于降低了计算成本。然而,到目前为止,尚未确定与原始霍尔MHD系统的一致程度以及在湍流状态下的有效范围。在这项工作中,在强平均磁场下对三维霍尔MHD湍流的直接数值模拟与弱可压缩RHMHD模型的模拟进行了比较。结果表明,一致性程度非常高(当满足RHMHD的不同假设(如光谱各向异性)时)。但是,当初始条件是各向同性的,但平均磁场仍保持很强时,结果在开始时有所不同,但在相对较短的时间内渐近地达到了很好的一致性。我们还发现有证据表明可压缩性仍在这些系统的动力学中起作用,而弱可压缩的RHMHD模型则能够捕获这些影响。总之,在相关物理环境中,弱可压缩RHMHD模型是Hall MHD湍流的有效近似。

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