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Magnetic control of thermal convection in electrically non-conducting or low-conducting paramagnetic fluids

机译:非导电或低导电顺磁流体中热对流的磁控制

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An inhomogeneous magnetic field exerts a magnetization force on all materials, including electrically conducting and non-conducting fluids. A recent experiment demonstrated that this force can enhance or suppress convection in a paramagnetic aqueous solution heated from either below or above. In this paper, to clarify the mechanism of the observed phenomena, we numerically simulated the effect of a vertical magnetic field gradient on thermal convection in paramagnetic fluids. These simulated results agree with experimental observations. Our study shows that the magnetic buoyancy force has potential applications for controlling convection and enhancing the heat transfer efficiency in either electrically non-conducting or low-conducting fluids.
机译:不均匀的磁场会在所有材料(包括导电和非导电流体)上施加磁化力。最近的实验表明,该力可以增强或抑制从下方或上方加热的顺磁性水溶液中的对流。在本文中,为了阐明观察到的现象的机理,我们在数值上模拟了垂直磁场梯度对顺磁流体中热对流的影响。这些模拟结果与实验观察结果一致。我们的研究表明,磁性浮力在控制对流和提高非导电或低导电流体的传热效率方面具有潜在的应用。

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