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Numerical simulation of electrically conducting jet flow in a straight duct under longitudinal homogeneous magnetic field

机译:纵向均匀磁场下直管中导电射流流动的数值模拟

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摘要

Spatial evolution of electrically conducting jet flow at a supercritical Reynolds number, entering a duct filled with the liquid of the same physical properties, is studied by direct numerical simulations for the case of a streamwise uniform magnetic field. In contrast to the case of a transverse field, here the jet mean velocity does not interact with the streamwise field, and only the turbulent fluctuations of the flow are influenced and suppressed by the field. In this case, the jet saves its energy and has a tendency to spread at much larger distances. Therefore, one interesting and important property of this setup is the flow stabilization, i.e., transition to turbulence can be largely delayed due to the stabilizing effect of the magnetic field. This occurs in the presence of moderate magnetic fields. At strong magnetic fields, the second instability evolves-the jet profile becomes unsteady due to the traveling waves, which propagate along the jet while not interacting with the field. These traveling waves are generated by the interaction of secondary radial flows and magnetic field.
机译:的导电在超临界雷诺数喷流,在进入充满液体相同的物理性能的管道空间演化,通过一种用于流向均匀磁场的情况下直接数值模拟研究。与此相反的横向场的情况下,这里的射流平均速度不相互作用与流向字段,只有流动的湍流波动的影响,并通过场抑制。在这种情况下,喷射节约能源,具有在更大距离的扩散趋势。因此,这种设置的一个有趣的和重要的性质是稳流,即,过渡到湍流可在很大程度上归因于磁场的稳定效果延迟。这发生在中等的磁场的存在。在强磁场中,第二不稳定性演变-射流轮廓变得对行波,其沿射流传播,同时不与场的相互作用不稳定所致。这些行波由次级径向流和磁场的相互作用产生。

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  • 来源
    《Physics of fluids》 |2019年第1期|共15页
  • 作者单位

    Ilmenau Univ Technol Inst Thermodynam &

    Fluid Mech D-98693 Ilmenau Germany;

    Ilmenau Univ Technol Inst Thermodynam &

    Fluid Mech D-98693 Ilmenau Germany;

    Ilmenau Univ Technol Inst Thermodynam &

    Fluid Mech D-98693 Ilmenau Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 流体力学;
  • 关键词

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