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Performance of various sub-grid scale models in large-eddy simulations of turbulent flow over complex terrain

机译:复杂地形上大湍流湍流模拟中各种子网格比例模型的性能

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摘要

Turbulent flow over a two-dimensional steep hill was analyzed by large-eddy simulations (LES). Here, six LES computations were carried out using four different sub-grid scale (SGS) models and two different ground surface conditions. The accuracy of these computations was assessed by comparing the results with those from an experiment by Ishihara et al. (An experimental study of turbulent boundary layer over a steep hill, Proceedings of the 15th National Symposium on Wind Engineering, 1998, pp. 61-66; J. Wind Eng. 89 (2001) 573). The results of the dynamic SGS models were in very poor agreement with those of the experiment. The poor prediction accuracy was mainly caused by the inaccurate estimation of the model coefficient near the ground surface. In order to improve the prediction accuracy of the dynamic SGS models, a hybrid SGS model, i.e., a combination of the standard Smagorinsky model and the dynamic Smagorinsky model, was introduced. The hybrid model provided very accurate predictions and produced the best results of the four SGS models compared here.
机译:通过大涡模拟(LES)分析了二维陡峭山丘上的湍流。在此,使用四个不同的子网格比例(SGS)模型和两个不同的地面条件进行了六次LES计算。通过将结果与Ishihara等人的实验结果进行比较,评估了这些计算的准确性。 (对陡峭山坡上的湍流边界层进行的实验研究,第15届全国风力工程研讨会论文集,1998年,第61-66页; J。Wind Eng。89(2001)573)。动态SGS模型的结果与实验结果非常差。预测精度差主要是由于对地表附近的模型系数估计不准确所致。为了提高动态SGS模型的预测精度,引入了混合SGS模型,即标准Smagorinsky模型和动态Smagorinsky模型的组合。混合模型提供了非常准确的预测,并在此处进行比较的四个SGS模型中产生了最佳结果。

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