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首页> 外文期刊>International Journal of Heat and Fluid Flow >Analysis of turbulence structures and the validity of the linear Boussinesq hypothesis for an infinite tube bundle
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Analysis of turbulence structures and the validity of the linear Boussinesq hypothesis for an infinite tube bundle

机译:无限管束对湍流结构的分析及线性Boussinesq假设的有效性

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摘要

The basis of many turbulence models in computational fluid dynamics is the linear Boussinesq hypothesis that assumes an alignment between the mean strain rate tensor and the Reynolds stress tensor. The validity of this main assumption is analyzed for the test case of an infinite tube bundle with periodic boundary conditions at Re-b approximate to 34, 800. This work focuses on the application of five methods based on the Reynolds-averaged Navier-- Stokes equations and two scale resolving methods and their ability to accurately reproduce the mean velocity field and the Reynolds stresses. In addition, their capability to predict the anisotropic behavior of the turbulent flow is analyzed. The results indicate that only scale resolving methods are able to predict the turbulent flow field properly for the case under investigation. The results of the large eddy simulation are used to further analyze the distribution of the validity parameter rho RS and the anisotropic turbulence field. Only small areas between the tubes are identified in which alignment occurs and the linear Boussinesq hypothesis is therefore fully valid.
机译:计算流体动力学中许多湍流模型的基础是线性Bousinesq假设,其假设平均应变速率张量和雷诺应力张量之间的对准。分析了这种主要假设的有效性,用于在RE-B近似与34,800的周期性边界条件的无限管束的测试用例。这项工作侧重于基于Reynolds-Iveraged Navier的五种方法的应用 - Stokes方程和两个尺度分辨方法及其准确再现平均速度场和雷诺应力的能力。此外,分析了它们预测湍流的各向异性行为的能力。结果表明,只有规模的解决方法能够在调查的情况下正确地预测湍流场。大型涡模拟的结果用于进一步分析有效性参数RHO RS和各向异性湍流场的分布。仅识别出管之间的小区域,其中发生对准并且线性Boussinesq假设是完全有效的。

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