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Numerical Study of Magnetic Field Effects on Buoyancy Driven Convection in a Non-isothermally Heated Square Enclosure

机译:非等温加热方形外壳中磁场对浮力驱动对流的数值研究

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Numerical simulation of natural convection heat transfer in the presence of a magnetic field is analyzed in a non-isothermally heated square enclosure. The left wall is heated and cooled with a sinusoidal heat source and the right wall is cooled isothermally. The horizontal walls of the enclosure are adiabatic. The effects of Rayleigh number (Ra = 10~4, 10~5 and 10~6), Hartmann number (Ha = 0, 25, 50 and 100) and amplitude of sinusoidal function (n = 0.25, 0.5 and 1) on temperature and flow fields are analyzed. It is observed that the rate of heat transfer is decreased with increasing the Hartmann number; it is also decreased when decreasing the amplitude of sinusoidal function.
机译:在非等温加热的方形外壳中分析了存在磁场时自然对流换热的数值模拟。左壁被正弦热源加热和冷却,右壁被等温冷却。外壳的水平壁是绝热的。瑞利数(Ra = 10〜4、10〜5和10〜6),哈特曼数(Ha = 0、25、50和100)和正弦函数振幅(n = 0.25、0.5和1)对温度的影响并分析流场。观察到,随着哈特曼数的增加,传热速率降低。当减小正弦函数的振幅时,它也会减小。

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