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Experimental and numerical study of wind flow behind windbreaks

机译:风挡后风流的实验和数值研究

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The shelter effect of a windbreak protects aggregate piles and provides a reduction of particle emissions in harbours. RANS (Reynolds-averaged Navier-Stokes equations) simulations using three variants of k-ε (standard k-ε, RNG k-ε and realizable k-ε) turbulence closure models have been performed to analyse wind flow characteristics behind an isolated fence located on a flat surface without roughness elements. The performance of the three turbulence models has been assessed by wind tunnel experiments. Cases of fences with different porosities (φ) have been evaluated using wind tunnel experiments as well as numerical simulations. The aim is to determine an optimum porosity for sheltering effect of an isolated windbreak. A value of 0.35 was found as the optimum value among the studied porosities (φ = 0, 0.1, 0.24, 0.35, 0.4, 0.5).
机译:防风林的遮挡作用可保护集料堆并减少港口中的颗粒物排放。使用k-ε(标准k-ε,RNGk-ε和可实现的k-ε)湍流闭合模型的三个变体进行RANS(雷诺平均Navier-Stokes方程)模拟,以分析位于隔离栅栏后面的风流特征在没有粗糙元素的平面上。三种湍流模型的性能已通过风洞实验进行了评估。使用风洞实验和数值模拟对具有不同孔隙度(φ)的围栏案例进行了评估。目的是确定最佳的孔隙度,以保护孤立的防风林。在研究的孔隙率中,最佳值为0.35(φ= 0、0.1、0.24、0.35、0.4、0.5)。

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