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Numerical Simulation of Fluid Flow around Porous Fences and Highways

机译:多孔栅栏和公路周围流体流动的数值模拟

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摘要

An initial study to develop a numerical tool by using computational fluid dynamics (CFD) methods for investigating the air flow characteristics around the porous fences and highway was completed. In order to satisfy the requirements for the building and construction of highway in the desert areas, a detailed CFD model was built and a Reynolds-averaged NavierStokes (RANS) simulation was performed by using a commercial package ANSYS. By comparing with available test data, the RANS simulations are substantially consistent with existing experimental results. The flow distribution function, height of porous fences and porosity and number of openings significantly affect the air flow in the vicinity of the porous fence. Also,the wake zone increases with increasing height of the roadbed and the grade of side slope.Thus, the present framework is useful to investigate the general airflow pattern in and around other engineering constructions.
机译:完成了使用计算流体动力学(CFD)方法开发数值工具以调查多孔围栏和高速公路周围的空气流动特性的初步研究。为了满足沙漠地区公路建设的要求,建立了详细的CFD模型,并使用商业软件包ANSYS进行了雷诺平均NavierStokes(RANS)仿真。通过与可用测试数据进行比较,RANS仿真与现有实验结果基本一致。流量分布函数,多孔栅栏的高度,孔隙率和开口数显着影响多孔栅栏附近的空气流动。此外,尾流区随着路基高度的增加和边坡的坡度的增加而增加。因此,本框架可用于研究其他工程构造及其周围的一般气流模式。

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