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Influence of Non-uniform Magnetic Flux Density on Turbulent MHD Flows in a Liquid Metal MHD Power Generator

机译:液态金属MHD发电机中非均匀磁通密度对MHD湍流的影响

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Large-eddy simulation (LES) of turbulent MHD duct flows is carried out in the liquid metal MHD generator, and the influence of the non-uniform magnetic flux density on the turbulent flows is examined. For high magnetic flux density, the structures of Reynolds stress align along the orientation of the magnetic flux density, and those structures periodically flowed toward the downstream region like Karman vortex sheets are observed. The stronger magnetic field makes the laminarized flow turbulent again. That is confirmed by using spectrum analysis. It is found that a pair of eddy as the secondary flow for the non-MHD duct flow diminishes in the MHD flow. The non-uniform magnetic flux density in the streamwise direction produces the eddy currents that lead to the M-shaped velocity profiles in the plane parallel to the external magnetic field. The velocity profiles are modulated more strongly with the magnetic flux density.
机译:在液态金属MHD发生器中进行了湍流MHD管道流的大涡模拟(LES),并研究了非均匀磁通密度对湍流的影响。对于高磁通密度,雷诺应力的结构沿磁通密度的方向排列,并且观察到那些周期性地流向下游区域的结构,如Karman涡旋片。较强的磁场使层流再次产生湍流。通过使用频谱分析可以确认这一点。已发现,作为非MHD导管流的次级流的一对涡流在MHD流中减少了。沿气流方向的不均匀磁通密度会产生涡流,该涡流会导致在与外部磁场平行的平面中产生M形速度分布。速度曲线通过磁通量密度得到更强的调制。

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