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Numerical investigation of the performance of engineered barriers in reducing flood risk

机译:减少洪水风险的工程障碍性能的数值调查

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In this paper, 2-dimensional, hydro-mechanically coupled finite element analyses are performed to assess the performance of an engineered barrier aimed at reducing flood risk in urban environments. The barrier consists of an unsaturated compacted soil layer and a drainage layer of a coarse granular material, constructed on top of the natural soil, in this case London clay. The barrier is vegetated so that its water storage capacity is renewed after each rainfall event. Sophisticated boundary conditions are used to simulate the effect of precipitation and evapotranspiration. The rainfall water infiltration and the initiation of water run-off during intense precipitation events are simulated. The effect of the hydraulic properties of the unsaturated soil layer on the performance of the system is investigated by means of parametric analyses. The effect of precipitation rate and geometry of the barrier is also discussed. Design recommendations for the properties of the compacted layer and the dimensions of the system are given at the end of the paper.
机译:在本文中,执行二维,水力机械耦合的有限元分析,以评估旨在减少城市环境中洪水风险的工程屏障的性能。屏障由不饱和的压实土层和粗粒材料的排水层组成,在天然土壤顶部构建,在这种情况下,在这种情况下伦敦粘土。屏障被植被,使其储存能力在每次降雨事件后更新。复杂的边界条件用于模拟沉淀和蒸发的效果。模拟了降雨水渗透和在激烈的降水事件期间的水径流开始。通过参数分析研究了不饱和土层对系统性能的影响。还讨论了屏障的沉淀率和几何形状的影响。在纸张结束时给出了压实层的性质和系统尺寸的设计建议。

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