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首页> 外文期刊>Meccanica: Journal of the Italian Association of Theoretical and Applied Mechanics >Combined natural convection heat and mass transfer in an enclosure having finite thickness walls
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Combined natural convection heat and mass transfer in an enclosure having finite thickness walls

机译:壁厚有限的封闭空间内自然对流传热和传质的结合

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摘要

Unsteady three-dimensional conjugate heat and mass transfer in an enclosure having finite thickness heat-conducting walls has been analyzed numerically. The governing unsteady, three-dimensional flow, energy and contaminant transport equations for the gas cavity and unsteady heat conduction equation for solid walls, written in dimensionless terms of the vector potential functions, the vorticity vector, the temperature and the concentration, have been solved using an iterative implicit finite-difference method. Main attention was paid to the effects of the Rayleigh number, buoyancy ratio and the dimensionless time on the flow structure and heat and mass transfer regimes. It should be noted that the dominant cause of the oscillations in the dimensionless time dependences of the average Nusselt number on the heat source surface and the average Sherwood number on the contaminant source surface at Ra>5×10~5 is the mutual influence of the analyzed object geometry and the thermo-diffusivity impact on the flow. The change in the buoyancy ratio can lead to the essential modifications of the flow, temperature and concentration fields owing to the significant influence of the concentration gradient.
机译:已经对具有有限厚度的导热壁的外壳中的非稳态三维共轭传热和传质进行了数值分析。解决了用矢量势函数,涡度矢量,温度和浓度的无量纲形式表示的,用于气腔的支配的非定常,三维流动,能量和污染物输送方程式以及用于固体壁的非定常导热方程式使用迭代隐式有限差分方法。主要关注瑞利数,浮力比和无因次时间对流动结构以及传热传质的影响。应该注意的是,在Ra> 5×10〜5时,热源表面上的平均Nusselt数和污染物源表面上的平均Sherwood数在无因次时间相关性中产生振荡的主要原因是由于分析了物体的几何形状以及热扩散率对流动的影响。由于浓度梯度的显着影响,浮力比的变化可导致流量,温度和浓度场的本质变化。

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