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The transition from natural convection to thermomagnetic convection of a magnetic fluid in a non-uniform magnetic field

机译:非均匀磁场中磁性流体从自然对流到热磁对流的过渡

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Magnetic fluid flow and heat transfer by natural and thermomagnetic convection was studied numerically in a square enclosure. The aim was to investigate the transition from natural convection to thermomagnetic convection by exploring situations where buoyancy and the Kelvin body force would be opposing each other such that the magnetic effects would in some cases be the dominant factor throughout the domain and in other cases only in a part of the fluid. The numerical model coupled the solution of the magnetostatic field equation with the heat and fluid flow equations to simulate the fluid flow under a realistic magnetic field generated by a permanent magnet. The results suggest that the domain of influence over the flow field is largely aligned with the domain of dominance of the respective driving force. The result is that the transition from a single buoyancy-driven convection cell to a single thermomagnet-ically driven cell is via a two-cell structure and that the local effect on the flow field leads to a global effect on the heat transfer with a minimum of the Nusselt number in the transition region.
机译:在正方形外壳中,通过自然和热磁对流对磁性流体的流动和传热进行了数值研究。目的是通过研究浮力和开尔文体力彼此相对的情况来研究从自然对流到热磁对流的过渡,从而在某些情况下磁效应将成为整个领域的主导因素,而在其他情况下,仅流体的一部分。数值模型将静磁场方程的解与热和流体流动方程耦合在一起,以模拟在永磁体产生的真实磁场下的流体流动。结果表明,对流场的影响范围在很大程度上与相应驱动力的主导范围对齐。结果是,从浮力驱动的对流单元到单个热磁驱动的单元的转换是通过两单元结构进行的,并且对流场的局部影响导致对传热的整体影响最小。过渡区域中的Nusselt数。

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