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Numerical simulation of conjugate turbulent mixed convection in an open cavity: Evaluation of different wall heat conduction models

机译:开孔中共轭湍流混合对流的数值模拟:不同壁导热模型的评价

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摘要

The flow structure and temperature field of the conjugate turbulent mixed convection in an open cavity were investigated numerically. Results including the local and average temperatures as well as Nusselt number were obtained and compared for the Reynolds number of 1200, the Rayleigh numbers of 1.25x10(12)Ra2.5x10(13), the thermal conductivity ratios of 1 1x10(5), and the reduced wall thickness of 0.050.5. The conjugate model as well as two commonly used simplified heat conduction models, that is, one-dimensional and lumped-parameter methods, were used to solve the issue of heat transfer within the solid walls. The effects of the buoyancy, thermal conductance ratio, and reduced thickness on the errors in predicting the dimensionless temperature profile and Nusselt number using two simplified wall conduction models are discussed in detail. The results show that the one-dimensional method accurately predicts the flow field and temperature distribution for all cases considered. The lumped-parameter method shows a lower temperature distribution but a closer average Nusselt number with the conjugate method. The errors in the simplified models also increase with the increasing buoyancy force.
机译:在数值上研究了开孔中的共轭湍流对流的流动结构和温度场。获得包括局部和平均温度的结果以及何地位,并比较雷诺数为1200的雷诺数,1.25x10(12)Ra2.5x10(13)的瑞利次数,导热比为1 1×10(5),并且壁厚减小为0.050.5。共轭模型以及两种常用的简化的导热模型,即一维和集成参数方法,用于解决固体壁内的传热问题。详细讨论了使用两种简化壁传导模型预测无量纲温度曲线和NURSELT数的误差对误差的浮力。结果表明,一维方法准确地预测了所有考虑的案例的流场和温度分布。大块参数方法显示了较低的温度分布,但是具有缀合物方法的较近平均水的数量。简化模型中的误差也随着浮力的增加而增加。

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