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Numerical simulation and optimization study of the wind flow through a porous fence

机译:风流通过多孔栅栏的数值模拟与优化研究

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Three turbulence closure models (RNG k - ε , SST k - ω and RSM) were used to investigate the flow characteristics around a two-dimensional isolated porous fence. The comparison between the numerical results and the experimental measurements indicated that RSM model shows a better performance than the other two models. The aim of this paper is to accurately and efficiently determine the optimum porosity that attain the best shelter effect of the wind fence in the near wake region (0–4 h ~(b)) and in the far wake region (4 h ~(b)–10 h ~(b)) respectively, where h ~(b)is the height of the fence. The gradient algorithm was adopted as the optimization algorithm and the RSM model was used to model turbulent features of the flow. The shelter effect was parameterized by the peak velocity ratio involving velocity and turbulence. The objective was to reduce the peak velocity ratio in the near or far wake region by changing the design variable porosity ( ? ) of the fence, which ranged between 2 and 60%. The results revealed that a porosity of 10.2% was found as the optimum value giving rise to the best shelter effect in the near wake region, and ? ?=?22.1% was determined in the case of the far wake region. In addition, based on the proposed optimization method, it is found that the recirculating bubble behind the fence can only be detected when ? ?
机译:三种湍流闭合模型(RNG K - ε,SSTK-ω和RSM)用于研究二维隔离多孔围绕的流动特性。数值结果和实验测量之间的比较表明,RSM模型显示比其他两个模型更好的性能。本文的目的是准确,有效地确定最佳孔隙度,以靠近唤醒区域(0-4小时〜(b))和远唤醒区域(4小时〜( b)-10 h〜(b))分别为H〜(b)是围栏的高度。采用梯度算法作为优化算法,RSM模型用于模拟流动的湍流特征。通过涉及速度和湍流的峰值速度比参数化遮蔽效果。目的是通过改变围栏的设计可变孔隙度(α)来降低近或远唤醒区域中的峰值速度比,其范围为2至60%。结果表明,孔隙率为10.2%的孔隙率为最佳值,导致靠近苏醒区的最佳避难所效果,以及? ?=?22.1%在远唤醒区域确定。另外,基于所提出的优化方法,发现围栏后面的再循环气泡只能检测到? ?<?29.9%。

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