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首页> 外文期刊>International Journal of Heat and Mass Transfer >Natural convection heat transfer combined with melting process in a cubical cavity under the effects of uniform inclined magnetic field and local heat source
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Natural convection heat transfer combined with melting process in a cubical cavity under the effects of uniform inclined magnetic field and local heat source

机译:在均匀倾斜磁场和局部热源的作用下,自然对流传热与熔化过程在立方腔内结合

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Natural convective heat transfer combined with melting in a cubical cavity filled with a pure gallium under the effects of inclined uniform magnetic field and local heater has been studied numerically. The domain of interest is an enclosure bounded by two isothermal opposite vertical surfaces of low constant temperature and adiabatic other walls. A heat source of constant temperature is located on the bottom wall. An inclined uniform magnetic field affects the melting process inside the cavity. The governing equations formulated in dimensionless vector potential functions, vorticity vector and temperature with corresponding initial and boundary conditions have been solved using implicit finite difference method of the second-order accuracy. The effects of the Hartmann number, magnetic field inclination angle and dimensionless time on streamlines, isotherms, profiles of temperature and velocity as well as mean Nusselt number at the heat source surface have been analyzed. The obtained results revealed that a growth of magnetic field intensity reflects the convective flow suppression and heat transfer rate reduction. High values of Hartmann number homogenize the liquid flow and heat transfer inside the melting zone.
机译:在倾斜均匀磁场和局部加热器的作用下,对自然对流换热与熔化在纯镓填充的立方腔体中的结合进行了数值研究。感兴趣的区域是由低恒温和绝热其他壁的两个等温相对的垂直表面所包围的封闭空间。恒温的热源位于底壁上。倾斜均匀的磁场会影响型腔内部的熔化过程。利用二阶精度隐式有限差分法,求解了无量纲矢量势函数,涡度矢量和温度以及相应的初始和边界条件下的控制方程。分析了哈特曼数,磁场倾斜角和无量纲时间对流线,等温线,温度和速度分布以及热源表面的平均努塞尔数的影响。所得结果表明,磁场强度的增加反映了对流流动的抑制和传热速率的降低。 Hartmann数的高值使熔化区内的液体流动和传热均匀。

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