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Pressures on open canopy structures with parapets under wind loading

机译:风荷载作用下带护墙的开放式雨棚结构的压力

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Pressure coefficients due to wind in open canopy structures with parapets, such as those commonly used in gas stations, are presented. Two independent methodologies were used to obtain pressure coefficients: wind tunnel testing and Computational Fluid Dynamic (CFD) modeling. The experiments were performed in a low velocity atmospheric boundary layer wind tunnel. The atmospheric boundary layer flow was simulated in the tunnel and a small scale model of a canopy made with aluminum plates was tested considering wind incidence at 0° (normal-to-the ridge direction) and 30°. Pressures were measured at a number of locations on the plate and the parapets. CFD models were investigated under steady state conditions using commercial software. The wind tunnel results for a canopy without parapets were found to be in agreement with results obtained by other authors. The CFD simulations were in good agreement with the wind tunnel results for canopies with parapets. The values of the net pressure coefficients on the main surface show downward pressures close to the windward zone, followed by suction at the center, and downward pressure on the leeward zone of the canopy. Differences with current recommendations for the design of canopies are highlighted.
机译:提出了带有护墙的开放式雨棚结构(例如加油站中常用的那些)的风引起的压力系数。使用两种独立的方法来获取压力系数:风洞测试和计算流体动力学(CFD)建模。实验是在低速大气边界层风洞中进行的。在隧道中模拟了大气边界层流,并考虑了在0°(垂直于山脊方向)和30°处的风入射,测试了由铝板制成的顶篷的小规模模型。在平板和护墙板上的多个位置测量压力。使用商业软件在稳态条件下研究了CFD模型。发现没有护墙的顶篷的风洞结果与其他作者的结果一致。 CFD模拟与带护墙顶棚的风洞结果非常吻合。主表面上的净压力系数的值显示接近上风区域的向下压力,接着是中心的吸力,以及顶篷背风区域的向下压力。突出显示了与当前有关顶篷设计建议的差异。

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