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Hall magnetohydrodynamics simulations of end-shorting induced rotation in field-reversed configurations

机译:磁场反向配置中的短路引起的旋转的霍尔磁流体动力学模拟

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End-shorting of the open field lines that surround a field-reversed configuration (FRC) is believed to contribute to its observed rotation. In this study, nonlinear extended magnetohydrodynamics (MHD) simulations were performed that detail the end-shorting process and the resulting spin-up of the FRC. The tangential component of the electric field E-T is set to zero at the axial boundaries in an extended MHD model that includes the Hall and del P-e terms. This shorting of the electric field leads to the generation of toroidal fields on the open field lines, which apply a torque leading to a rotation of the ions on the open field lines. The FRC then gains angular momentum through a viscous transfer from the open field line region. In addition, it is shown that spin-up is still induced when insulating boundaries are assumed. (C) 2007 American Institute of Physics.
机译:据信,围绕着场反转配置(FRC)的空旷场线的末端短路有助于其观察到的旋转。在这项研究中,进行了非线性扩展的磁流体动力学(MHD)模拟,详细描述了端接短路过程以及由此产生的FRC旋转。在包含霍尔项和del P-e项的扩展MHD模型中,电场E-T的切向分量在轴向边界处设置为零。电场的这种短路导致在开放场线上产生环形场,该环形场施加转矩,导致离子在开放场线上旋转。然后,FRC通过从旷场线区域的粘性传递获得角动量。另外,表明了当假设绝缘边界时仍然引起自旋。 (C)2007美国物理研究所。

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