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Air flow around isolated gable-roof buildings with different roof pitches: Wind tunnel experiments and CFD simulations

机译:不同屋顶间距的隔离式山墙屋顶建筑​​物周围的气流:风洞实验和CFD模拟

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摘要

The air flow around isolated gable-roof buildings with different roof pitches was investigated by wind tunnel experiments and computational fluid dynamics (CFD) simulations based on a steady Reynolds-averaged Navier-Stokes equations (RANS) model. Firstly, wind tunnel experiments on the air flow around building models with three different pitches, specifically, 3:10, 5:10, and 7.5:10, were conducted to create a measurement database of the time-averaged velocity, turbulent kinetic energy, and pressure coefficient around the building. Next, sensitivity analyses for the grid resolutions and turbulence models of the CFD simulations were performed for the 5:10 roof pitch model. The performance of the CFD simulation with the selected grid resolution and turbulence model was examined and validated by comparing the results of the simulation with the measured data for all the roof pitches. Generally, for the streamwise velocity, the simulation results were found to be in good agreement with the measured values, with an average deviation of less than 15%. For points behind the building, however, the prediction accuracy showed as much as 30% deviation. This discrepancy was closely related to the fact that the transient fluctuations caused by vortex shedding around the building are not reproduced by the steady-RANS simulations used in this study. Finally, the effect of the roof pitch on the flow field around the building was investigated using the CFD simulations. We clarified that the difference in the flow fields of the 3:10 and 5:10 roof pitches is large, relative to the difference between the 5:10 and 7.5:10 pitches.
机译:通过风洞实验和基于稳定雷诺平均Navier-Stokes方程(RANS)模型的计算流体力学(CFD)模拟,研究了具有不同屋顶间距的孤立山墙屋顶建筑​​物周围的空气流动。首先,对风洞进行了三个不同螺距(分别为3:10、5:10和7.5:10)的建筑模型周围气流的风洞实验,以创建时均速度,湍动能,和建筑物周围的压力系数。接下来,针对5:10屋顶间距模型对CFD模拟的网格分辨率和湍流模型进行了敏感性分析。通过比较模拟结果和所有屋顶坡度的实测数据,检查并验证了具有所选网格分辨率和湍流模型的CFD模拟的性能。通常,对于水流速度,仿真结果与测量值非常吻合,平均偏差小于15%。但是,对于建筑物后面的点,预测准确性显示出高达30%的偏差。这种差异与以下事实密切相关:本研究中使用的稳态RANS模拟未再现建筑物周围涡流脱落引起的瞬态波动。最后,使用CFD仿真研究了屋顶间距对建筑物周围流场的影响。我们明确指出,相对于5:10和7.5:10间距之间的差异,3:10和5:10屋顶间距的流场差异较大。

著录项

  • 来源
    《Building and Environment》 |2015年第1期|204-213|共10页
  • 作者单位

    Department of Architecture and Building Engineering, Niigata Institute of Technology, 7719 Fujihashi, Kashiwazaki, Japan;

    Environmental Science and Technology, Graduate School of Science and Technology, Niigata University, 8050, Ikarashi 2-no-cho, Nishi-ku, Niigata, Japan;

    Department of Architecture and Building Engineering, Niigata Institute of Technology, 7719 Fujihashi, Kashiwazaki, Japan;

    Environmental Science and Technology, Graduate School of Science and Technology, Niigata University, 8050, Ikarashi 2-no-cho, Nishi-ku, Niigata, Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Gable roof; Roof pitch; Computational fluid dynamics (CFD); Wind tunnel experiment; Steady RANS;

    机译:山墙屋顶;屋顶间距计算流体动力学(CFD);风洞实验;稳定的RANS;

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