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Evaluation of LES and RANS CFD modelling of multiple steady states in natural ventilation

机译:自然通风中多个稳态的LES和RANS CFD模型评估

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This paper reports research carried out with the aim of evaluating and comparing the performance of Large Eddy Simulation (LES) and Unsteady Reynolds-Averaged Navier-Stokes (URANS) modelling for predicting the multiple steady states observed in experiments on a buoyancy-driven naturally ventilated enclosure. The sub-grid scales of the flow have been modelled using a Van Driest damped Smagorinsky sub-grid scale model in the case of LES and an RNG k-e turbulence model has been used for URANS. A novel mesh design strategy was introduced to design the LES mesh to identify an optimum 'wellresolved' mesh, assuming that the flow investigated is free-shear dominated. It was found that the URANS solution eventually settled down into a permanent steady state, displaying no evidence of continuing instabilities or periodic unsteadiness. Both URANS and LES solutions captured the existence of three steady states as observed in experimental studies. However, LES was more accurate in predicting the temperatures inside the enclosure compared to URANS. In the URANS solutions, it was observed that for smaller lower opening areas the average indoor temperature had noticeable discrepancies when compared with experimental results. Unlike URANS, LES correctly predicted different steady state temperatures for different opening areas and the time to reach steady state agreed closely with theoretical predictions. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文报道了旨在评估和比较大型涡模拟(LES)和非稳态雷诺平均Navier-Stokes(URANS)模型的性能而进行的研究,以预测在浮力驱动的自然通风实验中观察到的多个稳态外壳。在LES的情况下,已使用Van Driest阻尼Smagorinsky子网格比例模型对流的子网格比例进行了建模,URANS使用了RNG k-e湍流模型。引入了一种新颖的网格设计策略来设计LES网格,从而确定最佳的“良好分辨​​”网格,并假设所研究的流量以自由剪切为主。结果发现,URANS解决方案最终稳定下来成为永久稳定状态,没有显示出持续的不稳定或周期性不稳定的迹象。 URANS和LES解决方案都捕获了在实验研究中观察到的三个稳态。但是,与URANS相比,LES在预测机柜内部温度方面更为准确。在URANS解决方案中,可以观察到,与实验结果相比,对于较小的下部开口区域,平均室内温度存在明显差异。 LES与URANS不同,LES在不同的开口区域正确地预测了不同的稳态温度,并且达到稳态所需的时间与理论预测非常一致。 (C)2015 Elsevier Ltd.保留所有权利。

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