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首页> 外文期刊>International Journal of Engineering Science >Transient mixed convective heat transfer with melting effect from the vertical plate in a liquid saturated porous medium
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Transient mixed convective heat transfer with melting effect from the vertical plate in a liquid saturated porous medium

机译:液态饱和多孔介质中来自垂直板的具有混合作用的瞬态混合对流换热

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This paper aims to numerically analyze the melting effect on transient mixed convective heat transfer from a vertical plate in a liquid saturated porous medium. The Darcy's flow with the Boussinesq approximation and energy equations for this study is transformed into the non-dimensional equations by using pseudo-similarity coordinate (ζ) and dimension-less time (ξ). The resulting the boundary value problem is solved by the method of lines (MOLs) with central finite difference and Newton's iteration to completely obtain the solutions for the whole transient mixed convective heat transfer from transient heat conduction to steady mixed convection in porous medium with melting effect in the presence of aiding and opposing external flows. As shown in the results, it is both found that the rate of dynamic heat transfer is reduced with increasing melting strength and the response time from transient heat conduction to steady mixed convection in porous medium for aiding external flow is shorter than that for opposing external flow in the presence of melting effect. Additionally, the melting effect may be reduced with increasing mixed convective strength Gr/Re~(1/2) during transient mixed convective heat transfer in porous medium with aiding external flow.
机译:本文旨在对液态饱和多孔介质中垂直板的瞬态混合对流传热的熔化效应进行数值分析。通过使用伪相似坐标(ζ)和无量纲时间(ξ),将本研究的具有Boussinesq逼近和能量方程的达西流转换为无量纲方程。由此产生的边值问题通过具有中心有限差分的线法(MOL)和牛顿迭代法得以解决,从而完全获得了具有熔化效应的多孔介质中从瞬态热传导到稳态混合对流的整个瞬态混合对流换热的解。在协助和反对外部潮流的情况下。如结果所示,两者都发现随着熔体强度的增加,动态传热速率降低,并且多孔介质中从瞬态热传导到稳态混合对流的响应时间短于对向外部流动的响应时间。在熔化作用的存在下。另外,在多孔介质的瞬态混合对流传热过程中,随着辅助对流传热的增加,随着混合对流强度Gr / Re〜(1/2)的增加,熔融效应可能降低。

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