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首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Aerodynamic shape optimization of barriers for windblown sand mitigation using CFD analysis
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Aerodynamic shape optimization of barriers for windblown sand mitigation using CFD analysis

机译:使用CFD分析的风吹砂障碍空气动力学形状优化

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摘要

Protection from windblown sand is one of the key engineering issues for construction and maintenance of human infrastructures in arid environments. In the last decades, a number of barrier-type Sand Mitigation Measures with different shapes have been proposed in order to overcome this problem. Sand barriers are often deployed alongside long line-like infrastructures crossing vast desert regions. It follows that highly optimized preliminary design of the barrier cross section is of paramount importance in the perspective of a large-scale production, in order to minimize the construction costs per unit length, and maximize the aerodynamic performances. The present computational study aims to adapt and apply aerodynamic optimization to a windblown sand barrier. The search for the optimum is carried out on Computational Fluid Dynamics simulations, without recourse to surrogate models. Both gradient-based method and genetic algorithm are used, in the light of the features of the goal function previously sampled by extensive sensitivity studies. The approach is applied to two constructive forms of the same barrier having increasing complexity. Results are critically discussed by combining complementary remarks on the optimization convergence, the phenomenological reading of the flow around the optimized barrier, and its design and construction.
机译:来自风吹砂的保护是在干旱环境中建造和维护人力基础设施的关键工程问题之一。在过去的几十年中,已经提出了许多具有不同形状的障碍型砂减缓措施,以克服这个问题。沙障常伴伴随着横跨浩瀚的沙漠地区的长线上基础设施。因此,在大规模生产的角度下,屏障横截面的高度优化的初步设计是至关重要的,以便最小化每单位长度的结构成本,并最大限度地提高空气动力学性能。本计算研究旨在适应和适用于风吹的沙屏。在计算流体动力学模拟上进行最佳搜索,无需求助于代理模型。鉴于先前通过广泛的灵敏度研究采样的目标功能的特征,使用基于梯度的方法和遗传算法。该方法应用于具有增加复杂性的相同屏障的两个建设性形式。通过组合关于优化收敛的互补评论,优化屏障流动的现象学读数,以及其设计和结构来批评结果。

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