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Finite element analysis of MHD mixed convection heat transfer enhancement of a heat-generating block in a double lid-driven enclosure filled with air at different vertical location

机译:在不同垂直位置的双盖驱动外壳中的发热块MHD混合对流传热增强发热块的有限元分析

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The present numerical study is conducted to investigate MHD mixed convection flow and heat transfer characteristics in a double-lid driven cavity with a heat-generating solid square block. The cavity horizontal walls are adiabatic while both the vertical lids are maintained at a uniform temperature Tc and velocity V0. The present study simulates a reasonable system such as air-cooled electronic equipment with a heat component or an oven with heater. Emphasis is sited on the influences of the position of the block in the cavity. The transport governing equations are solved employing the finite element formulation based on the Galerkin method of weighted residuals. The computation is carried out for a wide range of relevant parameters such as location of the block and Richardson number. Results are presented for the effect of aforesaid parameters on the contours of streamline and isotherm. Besides, the heat transfer rate in terms of the average Nusselt number and temperature of the fluid and block center are offered for the mentioned parametric values. The obtained results demonstrate that the flow and thermal field are strongly influenced by the abovementioned parameters.
机译:进行本数值研究,以研究双盖子驱动腔中的MHD混合对流流量和传热特性,具有发热的固体方形块。腔水平壁是绝热的,同时垂直盖子都保持在均匀温度T C 和速度V 0 。本研究模拟了合理的系统,例如带有热部件或带加热器的烤箱的空气冷却电子设备。强调围绕块在腔内的位置的影响。通过基于加权残留的Galerkin方法,采用有限元制剂来解决运输控制方程。计算用于广泛的相关参数,例如块的位置和Richardson号。提出了上述参数对流线和等温线轮廓的影响的结果。此外,为所述参数值提供流体和块中心的平均露天数和温度的传热速率。所得结果表明,流动和热场受到上述参数的强烈影响。

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