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Dependence of heat transport on the strength and shear rate of prescribed circulating flows

机译:传热对规定循环流量的强度和剪切率的依赖性

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摘要

We study numerically the dependence of heat transport on the maximum velocity and shear rate of physical circulating flows, which are prescribed to have the key characteristics of the large-scale mean flow observed in turbulent convection. When the side-boundary thermal layer is thinner than the viscous boundary layer, the Nusselt number (Nu), which measures the heat transport, scales with the normalized shear rate to an exponent 1/3. On the other hand, when the side-boundary thermal layer is thicker, the dependence of Nu on the Peclet number, which measures the maximum velocity, or the normalized shear rate when the viscous boundary layer thickness is fixed, is generally not a power law. Scaling behavior is obtained only in an asymptotic regime. The relevance of our results to the problem of heat transport in turbulent convection is also discussed.
机译:我们从数值上研究了热传递对物理循环流的最大速度和剪切速率的依赖性,这些速率被规定为具有湍流对流中观测到的大规模平均流的关键特征。当侧边界热层比粘性边界层薄时,用于测量热传递的努塞尔特数(Nu)随归一化剪切速率缩放为指数1/3。另一方面,当侧边界热层较厚时,Nu对决定最大速度的佩克雷特数或固定粘性边界层厚度时的归一化剪切率的依赖性通常不是幂律。 。缩放行为仅在渐近状态下获得。还讨论了我们的结果与湍流对流中的热传递问题的相关性。

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