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Flood Control through Engineered Avulsions and Floodways in the Lower Yellow River

机译:通过黄河下游工程抽水抢险和防洪堤进行防洪

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Due to high in-channel sedimentation rates, the Yellow River Delta of China has changed course frequently in its history, with huge socioeconomic impacts. The following questions are addressed: What is the best timing and location of deliberate avulsions? Can temporary floodways lessen the cost and flooding impacts of avulsion strategies? To address these questions, a simulation-based optimization model is developed that is novel in its integration of economics, hydraulics, and sediment dynamics. The framework considers tradeoffs between the cost of avulsion-mitigation strategies and expected flooding risk. Four design variables (avulsion timing and location, floodway size, and operation rule) are optimized. The results suggest that locating the deliberate avulsion as far upstream as possible reduces total cost. However, the level of reduction of channel capacity at which a deliberate avulsion should be triggered is sensitive to assumed cost parameters. Meanwhile, the optimal floodway size is either the largest possible size or none at all, depending on the frequency of avulsion and floodway cost. Floodway costs influence decisions less than costs of avulsions and flood damage costs. (C) 2019 American Society of Civil Engineers.
机译:由于高的河道内沉积率,中国的黄河三角洲在其历史上经常改变路线,对社会经济产生巨大影响。解决了以下问题:故意撕脱的最佳时机和位置是什么?临时防洪道能减少破坏策略的成本和洪灾影响吗?为了解决这些问题,开发了一种基于仿真的优化模型,该模型在经济性,水力学和沉积物动力学的集成方面是新颖的。该框架考虑了缓蚀策略成本与预期洪水风险之间的权衡。优化了四个设计变量(破坏时间和位置,泄洪道尺寸和运行规则)。结果表明,将故意撕脱定位在尽可能上游的位置会降低总成本。但是,应触发故意撕脱的信道容量降低水平对假定的成本参数很敏感。同时,取决于洪水发生的频率和洪水的成本,最佳洪水道的大小要么是最大可能的大小,要么根本没有。洪灾成本对决策的影响要小于破坏成本和洪水破坏成本。 (C)2019美国土木工程师学会。

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