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首页> 外文期刊>International Journal of Heat and Mass Transfer >Improved scaling analysis of the transient buoyancy-driven flow induced by a linear temperature gradient
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Improved scaling analysis of the transient buoyancy-driven flow induced by a linear temperature gradient

机译:改进了线性温度梯度诱导的瞬态浮力驱动流的缩放分析

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摘要

The transient convective boundary layer flow induced by a linear temperature gradient and its subsequent intrusion flow are investigated in an open cavity with scaling analysis in this study. Scale laws quantifying the buoyancy-driven convective flow are obtained. Compared to previous similar studies, the present scaling analysis is predominantly improved by adopting a two-dimensional decomposition of the specified thermal gradient rather than following the traditional one-dimensional approach, in which way thermal restrains are greatly eliminated. Consequently, the obtained scales are much more generalised and convenient to use. They can also be extended to some problems where the previous scale laws are not handily applicable. It is demonstrated that both unsteady and steady convective boundary layers are two dimensional, which is fundamentally different from the well-known one dimensional growth in homogenous heating problems. An unsteady intrusion flow is considered in this study. Two flow Scenarios are identified for the intrusion and several possible flow regimes are found in each Scenario. A total of 120 transient cases are calculated by numerical simulations and the numerical data are compared against the scaling results. A reasonable agreement is obtained supporting the employed two-dimensional decomposition method and validating the derived scales.
机译:通过线性温度梯度引起的瞬态对流边界层流动及其随后的入侵流程在该研究中具有缩放分析的开孔中。获得量化浮力驱动的对流流程的规模法。与以前类似的研究相比,通过采用指定的热梯度的二维分解而不是遵循传统的一维方法,主要改善了当前的缩放分析,从而大大消除了热抑制的方式。因此,所获得的尺度更广泛,使用方便。它们也可以扩展到以前的规模法不适用的问题。结果证明,不稳定和稳定的对流边界层是二维的,其与均匀的均匀加热问题的众所周知的一维生长基本不同。在本研究中考虑了不稳定的入侵流程。识别出用于入侵的两个流程,并在每个场景中找到几种可能的流动制度。通过数值模拟计算总共120个瞬态案例,并将数值数据与缩放结果进行比较。获得合理的协议,支持采用的二维分解方法并验证派生尺度。

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