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A hybrid numerical simulation approach for turbulent flows over building-like obstacles.

机译:一种混合数值模拟方法,用于在建筑物障碍物上的湍流。

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摘要

Computational fluid dynamics (CFD) has been widely applied to simulate turbulent flows in an urban environment. The two basic methodologies in CFD that have been applied here are a Reynolds-averaged Navier-Stokes (RANS) modeling and a large-eddy simulation (LES). The nature of the flow in a built-up urban area consisting of an arbitrary aggregation of buildings is dominated by unsteady large-scale turbulent structures. Recognizing that RANS is unable to correctly capture these turbulent structures while LES is associated with high computational costs, a hybrid RANS/LES methodology that combines the computational efficiency of RANS with the predictive accuracy of LES can be a promising simulation approach for the application to urban flows.;A new generalized functional form for FR in PRNS is proposed in this thesis. The predictive performance of PRNS is compared with unsteady RANS (URANS) and LES computations, for a plane channel flow, and for fully-developed and developing flows over a matrix of cubes resembling a group of buildings. It is demonstrated that PRNS behaves similarly to LES, in terms of the predictions of the mean flow and turbulence, but outperforms URANS in general. This indicates PRNS is a promising approach for the simulation of complex turbulent flows in an urban environment.;In the non-zonal approach of hybrid RANS/LES methodology, a single generalized turbulence model is used in the entire computational domain. This model can function as a RANS turbulence closure model or as a LES subgrid scale model, depending on the local grid resolution or flow properties. A variant of non-zonal approaches, referred as partially resolved numerical simulation (PRNS) in this study, obtains the generalized turbulence model from the rescaling of a conventional RANS model through the incorporation of a resolution control function (FR). The resolution control function FR is used to characterize the degree of modeling required to represent the unresolved scales of motion.
机译:计算流体动力学(CFD)已被广泛应用于模拟城市环境中的湍流。此处使用的CFD中的两种基本方法是雷诺平均Navier-Stokes(RANS)建模和大涡模拟(LES)。在由任意聚集的建筑物组成的建成城区中,流动的性质主要由不稳定的大型湍流结构主导。认识到当LES与高计算成本相关联时,RANS无法正确捕获这些湍流结构,因此将RANS的计算效率与LES的预测精度相结合的混合RANS / LES方法对于在城市中的应用是一种很有前途的模拟方法本文提出了一种新的广义PRNS泛函形式。将PRNS的预测性能与非平稳RANS(URANS)和LES计算,平面通道流以及在类似于一组建筑物的多维数据集矩阵上的完全展开和展开流进行比较。结果表明,就平均流量和湍流的预测而言,PRNS的行为与LES相似,但总体上优于URANS。这表明PRNS是用于模拟城市环境中复杂湍流的一种有前途的方法。在混合RANS / LES方法的非区域方法中,在整个计算域中使用单个广义湍流模型。该模型可以用作RANS湍流闭合模型或LES子网格比例模型,具体取决于局部网格分辨率或流属性。非区域方法的一种变体,在本研究中称为部分解析数值模拟(PRNS),它是通过合并分辨率控制函数(FR)从常规RANS模型的重新定标中获得广义湍流模型的。分辨率控制函数FR用于表征表示未解决的运动比例所需的建模程度。

著录项

  • 作者

    Hsieh, Kun-Jung.;

  • 作者单位

    University of Waterloo (Canada).;

  • 授予单位 University of Waterloo (Canada).;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 101 p.
  • 总页数 101
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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