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CFD simulation of wind-induced pressure coefficients on buildings with and without balconies: Validation and sensitivity analysis

机译:带阳台和不带阳台的建筑物上风压系数的CFD模拟:验证和敏感性分析

摘要

Knowledge of the pressure distribution on building walls is important for the evaluation of wind loads and natural ventilation. Wind-induced pressure distributions are influenced by a wide range of factors including approach-flow conditions, urban surroundings and building geometry. Computational Fluid Dynamics (CFD) can be a valuable tool for determining mean wind pressure coefficients on building facades. However, while many CFD studies of mean wind pressure on buildings have been performed in the past, the vast majority of these studies focused on simple building geometries without facade detailssuch as balconies. These details however can drastically influence the flow pattern and the overall pressure distribution on the facade. This paper presents a systematic evaluation of 3D steady Reynolds-Averaged Navier-Stokes (RANS) CFD for predicting mean wind pressure distributions on windward and leeward surfaces of a medium-rise building with and without balconies. The evaluation is based on a grid-sensitivity analysis and on validation with wind-tunnel measurements. It is shown that building balconies can lead to very strong changes in wind pressure distribution, because they introduce multipleareas of flow separation and recirculation across the facade. The results show that steady RANS, in spite of its limitations, can accurately reproduce the mean wind pressure distribution across the windward facade of the building. The average deviations from the wind-tunnel measurements are 12% and 10% for the building with and without balconies, respectively. In addition, also the important impact of the reference static pressure and the turbulence model are demonstrated.
机译:了解建筑物墙壁上的压力分布对于评估风荷载和自然通风非常重要。风引起的压力分布受多种因素的影响,包括进风条件,城市环境和建筑物的几何形状。计算流体动力学(CFD)可以是确定建筑立面上平均风压系数的有价值的工具。然而,尽管过去已经进行了许多关于建筑物平均风压的CFD研究,但这些研究中的绝大部分集中在没有立面细节(例如阳台)的简单建筑物几何形状上。但是,这些细节会极大地影响立面上的流型和整体压力分布。本文介绍了3D稳定雷诺平均Navier-Stokes(RANS)CFD的系统评估,以预测带有或不带有阳台的中层建筑的迎风面和背风面的平均风压分布。该评估基于电网灵敏度分析和风洞测量的验证。结果表明,建筑阳台会导致风压分布发生非常强烈的变化,因为它们会在立面上引入多个流动分离和再循环区域。结果表明,稳定的RANS尽管有其局限性,但仍可以准确地再现建筑物迎风立面的平均风压分布。对于有阳台和无阳台的建筑物,风洞测量的平均偏差分别为12%和10%。此外,还展示了参考静压和湍流模型的重要影响。

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