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首页> 外文期刊>Journal of applied mathematics >Large Eddy Simulation of Turbulent Flow and Heat Transfer in a Ribbed Coolant Passage
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Large Eddy Simulation of Turbulent Flow and Heat Transfer in a Ribbed Coolant Passage

机译:带肋冷却液通道内湍流和传热的大涡模拟

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Numerical simulations of hydrodynamic and thermally fully developed turbulent flow are presented for flow through a stationary duct with periodic array of inline transverse rib turbulators. The rib height to hydraulic diameter ratioe/Dhis 0.1 and the rib pitch to rib height ratioP/eis 10. The effect of secondary flow due to presence of rib turbulators on heat and mass transfer has been investigated. The present work reviews the use of a large eddy simulation (LES) turbulence model, known as shear-improved Smagorinsky model (SISM), for predicting flow and heat transfer characteristics in the fully developed periodic flow region. The computations are performed for Reynolds number of 2,053 and the working fluid chosen to be air, the Prandtl number of which is 0.7. Instantaneous flow field, time-mean, and turbulent quantities are reported together with heat transfer and a close match with experiments has been observed.
机译:流体动力学和热充分发展的湍流的数值模拟是通过固定的管道流动的流动,该管道具有周期性的横向横向肋湍流器阵列。肋骨高度与水力直径之比e / Dhis 0.1和肋骨螺距与肋骨高度之比P / eis10。研究了由于肋骨湍流器的存在而引起的二次流对传热和传质的影响。本工作回顾了使用大型涡流模拟(LES)湍流模型(称为剪切改进的Smagorinsky模型(SISM))来预测完全发达的周期性流动区域中的流动和传热特性。对雷诺数为2,053的工作流体和被选择为空气的普朗特数为0.7的工作流体进行计算。报告了瞬时流场,时间平均值和湍流量以及传热,并且观察到与实验非常接近。

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