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Second-law analysis of convective pattern change in a rectangular cavity

机译:矩形腔内对流模式变化的第二定律分析

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Natural convection in a rectangular cavity is examined, utilizing the second law of thermodynamics. Through an application of the second law the rate of entropy generation associated with the convective pattern changes is evaluated for the onset of natural convection in a cavity with free boundaries, for which an exact solution is sought, as well as with rigid boundaries which is studied numerically. Entropy to be generated from the perturbed temperature and velocity fields is shown to depend on AR (aspect ratio of the cavity), Ra_c (the critical Rayleigh number) and a non-dimensional parameter, Ω, which is related to the ratio of entropy generation by viscous friction to that by thermal transport. The convective pattern change is related to a change in the spatial distributions of the rate of entropy generation due to heat transfer and due to dissipation, demonstrating that an application of the second law helps examine convective pattern changes quantitatively by dealing with temperature and velocity fields in a unified manner.
机译:利用热力学第二定律研究矩形腔体中的自然对流。通过应用第二定律,对与对流模式变化相关的熵产生速率进行了评估,以研究具有自由边界的腔中自然对流的发生,为此寻求精确的解决方案,并研究具有刚性边界的腔数值上。由扰动的温度和速度场产生的熵显示为取决于AR(腔体的纵横比),Ra_c(临界瑞利数)和一个无量纲参数Ω,该参数与熵的产生比例有关粘滞摩擦与热传递产生的摩擦。对流模式变化与热传递和耗散引起的熵产生率的空间分布变化有关,这表明第二定律的应用有助于通过处理温度和速度场来定量检查对流模式变化。统一的方式。

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