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首页> 外文期刊>International Journal of Heat and Fluid Flow >Large eddy simulations of forced heat convection in a pin-fin array with a priori examination of an eddy-viscosity turbulence model
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Large eddy simulations of forced heat convection in a pin-fin array with a priori examination of an eddy-viscosity turbulence model

机译:翅片阵列中强制对流的大涡模拟,先验检查了涡流-粘性湍流模型

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摘要

Reynolds-averaged Navier-Stokes (RANS) modeling remains the predominant technique for engineering simulations of turbulent flow and heat transfer. Most simulations employ the linear-eddy viscosity assumption to model the Reynolds stresses, which is known to produce inaccurate results in complex turbulent flows. The objective of this study is to provide new insight on the inadequacy of LEV models in complex engineering turbulence by performing an a priori examination of a typical LEV model, the k - omega shear-stress transport (SST) model, for flow predictions in a pin-fin array. First, LES results obtained from simulations with three levels of mesh resolution are presented and validated against published experimental data. Second, an a priori examination of the SST model is performed, considering discrepancies between the shape and orientation of the Reynolds stress tensors obtained from the SST model and the LES. The results illustrate that the LES predicted Reynolds stresses have significantly different characteristics in regions of developing versus fully developed turbulence, and in the bulk-flow versus near-wall regions. These differences are not reflected in the Reynolds stresses predicted by the SST model, which predicts very similar Reynolds stress shapes and orientations in these different flow regimes. The analysis provides some insight on correcting the shape of the Reynolds stress tensor in particular; this information will be used in future work to examine practical methods to quantify turbulence model form uncertainties.
机译:雷诺平均的Navier-Stokes(RANS)建模仍然是湍流和传热工程仿真的主要技术。大多数模拟都采用线性涡流粘度假设来建模雷诺应力,已知这会在复杂的湍流中产生不准确的结果。这项研究的目的是通过对典型的LEV模型(k-Ω切应力传递(SST)模型)进行先验检验,以对复杂工程湍流中LEV模型的不足提供新的见解。针鳍阵列。首先,介绍了从具有三个级别的网格分辨率的模拟中获得的LES结果,并​​针对已发布的实验数据进行了验证。其次,考虑从SST模型和LES获得的雷诺应力张量的形状和方向之间的差异,对SST模型进行先验检查。结果表明,LES预测的雷诺应力在正在发展的湍流区域与完全发展的湍流区域以及在大流量区域与近壁区域之间具有显着不同的特征。这些差异未反映在SST模型预测的雷诺应力中,后者预测了在这些不同流动状态下非常相似的雷诺应力形状和方向。该分析为校正雷诺应力张量的形状提供了一些见识。该信息将在以后的工作中用于检查量化湍流模型不确定性的实用方法。

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