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Integral Solutions for Transient Temperature Profiles in Stably-Stratified Open Enclosures

机译:稳定分层开放式外壳中瞬态温度曲线的整体解决方案

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The stably-stratified filling of an enclosure produces an interfacial layer, or thermocline, separating the hot and cold fluid volumes which is transported through the vessel with the bulk flow. The evolution of this interfacial layer is characterized by profile asymmetries and growth rates not explained by simple molecular diffusion. The present paper presents integral solutions to the horizontally-averaged energy equation with variable diffusivities exhibiting these same characteristics. The formulation requires only two parameters in addition to those of the uniform diffusivity case. The solutions are compared to published data to illustrate determination of the empirical constants and show that key characteristics of the model, specifically a constant fill-line temperature and symmetric growth rates, are satisfied for a range of moderate flow rates. At higher flow rates, the layers are seen to exhibit an increasingly higher degree of growth rate asymmetry.
机译:外壳的稳定分层填充会产生一个界面层或温跃层,将热和冷的流体体积分开,这些体积的流体通过容器运输。该界面层的演化以轮廓不对称和生长速率为特征,这不能通过简单的分子扩散来解释。本文提出了具有相同特征的可变扩散率的水平平均能量方程的积分解。除了均匀扩散情况外,该配方仅需要两个参数。将解决方案与已发布的数据进行比较,以说明经验常数的确定,并表明模型的关键特性(特别是恒定的填充线温度和对称的增长率)在一定范围的中等流速下得到了满足。在较高的流速下,可以看到这些层表现出越来越高的生长速率不对称度。

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