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CFD simulation of cross-ventilation for a generic isolated building: Impact of computational parameters

机译:通用隔离式建筑物对流换气的CFD模拟:计算参数的影响

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Accurate CFD simulation of coupled outdoor wind flow and indoor air flow is essential for the design and evaluation of natural cross-ventilation strategies for buildings. It is widely recognized that CFD simulations can be very sensitive to the large number of computational parameters that have to be set by the user. Therefore, detailed and generic sensitivity analyses of the impact of these parameters on the simulation results are important to provide guidance for the execution and evaluation of future CFD studies. A detailed review of the literature indicates that there is a lack of extensive generic sensitivity studies for CFD simulation of natural cross-ventilation. In order to provide such a study, this paper presents a series of coupled 3D steady RANS simulations for a generic isolated building. The CFD simulations are validated based on detailed wind tunnel experiments with Particle Image Velocimetry. The impact of a wide range of computational parameters is investigated, including the size of the computational domain, the resolution of the computational grid, the inlet turbulent kinetic energy profile of the atmospheric boundary layer, the turbulence model, the order of the discretization schemes and the iterative convergence criteria. Specific attention is given to the problem of oscillatory convergence that was observed during some of these coupled CFD simulations. Based on this analysis, the paper identifies the most important parameters. The intention is to contribute to improved accuracy, reliability and evaluation of coupled CFD simulations for cross-ventilation assessment.
机译:精确的CFD模拟室外风与室内风的耦合对建筑物自然通风设计和评估至关重要。众所周知,CFD仿真对用户必须设置的大量计算参数非常敏感。因此,对这些参数对模拟结果的影响进行详细而通用的敏感性分析对于为将来的CFD研究的执行和评估提供指导非常重要。对文献的详细审查表明,对于自然交叉换气的CFD模拟,缺乏广泛的通用敏感性研究。为了提供这样的研究,本文提出了一系列针对一般隔离建筑的耦合3D稳态RANS仿真。基于详细的风洞实验和粒子图像测速技术对CFD模拟进行了验证。研究了各种计算参数的影响,包括计算域的大小,计算网格的分辨率,大气边界层的入口湍流动能分布,湍流模型,离散化方案的阶数和迭代收敛准则。在这些耦合CFD仿真中的某些过程中观察到的振荡收敛问题得到了特别的关注。在此分析的基础上,本文确定了最重要的参数。目的是为跨通风评估的耦合CFD模拟的改进准确性,可靠性和评估做出贡献。

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