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首页> 外文期刊>International journal of applied electromagnetics and mechanics >Magneto-natural convection in square cavities with a source-sink pair on different walls
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Magneto-natural convection in square cavities with a source-sink pair on different walls

机译:方腔中的磁自然对流,在不同壁上有一对源-漏

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摘要

Magnetohydrodynamic natural convection fluid flow and heat transfer in a square enclosure with a pair of source and sink on its walls, filled with liquid Gallium fluid with Prandtl number of 0.02 has been investigated numerically. The heat source and heat sink are maintained at a constant temperature T-h and T-c, respectively with T-h > T-c. By variation of relative location of the heat source and sink on the walls of the enclosure, five different cases are generated. The governing equations written in terms of the primitive variables are solved numerically using the finite volume method and the SIMPLER algorithm. Using the developed code, a parametric study is performed, and the effects of the Rayleigh number, the Hartman number, and the locations of the source and sink on the fluid flow and heat transfer inside the enclosure are investigated. The results show that the flow and temperature distributions inside the enclosure are affected by the strength of the magnetic field, the Rayleigh number, and the relative location of the heat source and sink. The magnetic field decreases the rate of heat transfer, suppresses the convection heat transfer, and tends to slows down the flow velocity in the cavity. Moreover in some cases the magnetic field changes the flow pattern inside the enclosure.
机译:磁流体动力学自然对流流体在正方形外壳中的流动和传热,该正方形外壳在其壁上有一对源和汇,填充了普朗特数为0.02的液态镓流体。热源和散热器分别保持在恒定温度T-h和T-c,且T-h> T-c。通过改变热源和散热器在外壳壁上的相对位置,产生了五种不同的情况。使用有限体积法和SIMPLER算法以数值方式求解以原始变量表示的控制方程。使用开发的代码进行参数研究,并研究瑞利数,哈特曼数以及源和汇的位置对外壳内部流体流动和热传递的影响。结果表明,外壳内部的流量和温度分布受磁场强度,瑞利数以及热源和散热器的相对位置的影响。磁场降低了传热速率,抑制了对流传热,并趋于减慢了空腔中的流速。此外,在某些情况下,磁场会改变外壳内部的流动模式。

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