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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Numerical simulations of forced convection across a single tube to evaluate applicability of the DNS, LES and RSM methods
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Numerical simulations of forced convection across a single tube to evaluate applicability of the DNS, LES and RSM methods

机译:单管中强制对流的数值模拟,以评估DNS,LES和RSM方法的适用性

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摘要

Forced convection across a single tube was investigated numerically for various Reynolds numbers using various numerical models to identify suitable ranges for each model. Direct numerical simulations (DNS), large eddy simulations (LES), and a Reynolds averaged model using the Reynolds stress model (RSM) were compared with experimental date. The calculations used unsteady two-dimensional models with air as the working fluid. For the mesh used here, for Re < 10,000, the DNS method gave good results. For 10,000 < Re < 100,000, the LES is preferred while for Re > 100,000, the RSM is better. Nonlinear phenomena were found for various Reynolds numbers. For Re < 100, the average Nusselt number did not change with time while for 100 < Re < 1000, the average Nusselt number oscillated with time. The local Nusselt numbers along the entire tube are also discussed. (C) 2017 Published by Elsevier Ltd.
机译:使用各种数值模型对各种雷诺数进行数值进行数值进行数字地研究了单个管的强制对流,以确定每个模型的合适范围。 将使用雷诺应力模型(RSM)的直接数值模拟(DNS),大涡模拟(LES)和雷诺平均模型进行了实验日期。 计算使用了具有空气作为工作流体的不稳定的二维模型。 对于此处使用的网格,对于RE <10,000,DNS方法效果良好。 对于10,000 100,000的同时,RSM更好。 发现了各种雷诺数的非线性现象。 对于RE <100,平均纽带数量在100

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