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How effective are drainage systems in mitigating flood losses?

机译:排水系统在减轻洪水损失方面有多有效?

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The impacts of flooding can be devastating. Huge financial burden often follows major storm events to recover from structural damage. Well-designed drainage systems allow for effective discharge of stormwater, reducing property losses and expenditures on recovery. However, a lack of empirical studies on the topic has impeded the determination of which drainage method might be the most effective in preventing or minimizing property losses from flooding. This study assessed the economic impacts of three drainage systems - storage-, conveyance-, and infiltration-based facilities - on reducing flood damage recorded from 2009 to 2012 by Federal Emergency Management Agency in the Buffalo Bayou watershed in Houston, Texas, USA. Ordinary least squares and spatial autoregressive models were developed with a group of variables featuring drainage system, housing structure, geophysical environment, and storm characteristics. The results show that storage-based systems outperform conveyance-based mechanisms. Infiltration-based facilities are found to be less effective in reducing property damage because green spaces disconnected from sewer systems are rapidly inundated after being saturated while excessive overflow is not properly drained. This study confirms that the performance of a drainage system varies by facility type and environmental setting. The results encourage the recovery of wetlands and integration of retention/detention basins into community development in flood-prone areas to prevent potential future economic losses.
机译:洪水的影响可能是毁灭性的。巨大的金融负担往往追随大型风暴事件,从结构损伤中恢复。精心设计的排水系统允许有效地排放雨水,降低了恢复的财产损失和支出。然而,对该话题的缺乏实证研究已经阻碍了哪些排水方法可能是预防或最小化洪水的性能损失最有效的。本研究评估了三种引流系统 - 储存,传送和渗透的经济影响 - 以美国德克萨斯州休斯顿的布法罗·贝鲁流域中的2009年至2012年从2009年到2012年减少洪水损害。普通的最小二乘和空间自回归模型是用一群变量开发的,其中一组变量,外壳结构,地球物理环境和风暴特征为特色。结果表明,基于存储的系统优于基于传送的机制。由于在饱和后,由于从下水道系统断开的绿色空间在饱和后迅速淹没,因此发现基于渗透的设施在减少财产损失时不太有效。本研究证实,排水系统的性能因设施类型和环境环境而异。结果鼓励恢复湿地和保留/拘留盆地的整合到普通地区的社区发展,以防止潜在的未来经济损失。

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