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Staged Optimization Design for Updating Urban Drainage Systems in a City of China

机译:中国城市更新城市排水系统的分阶段优化设计

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Flooding has been reported more often than in the past in most cities of China in recent years. In response, China’s State Council has urged the 36 largest cities to update the preparedness to handle the 50-year rainfall, which would be a massive project with large investments. We propose a staged optimization design for updating urban drainage that is not only a flexible option against environmental changes, but also an effective way to reduce the cost of the project. The staged cost optimization model involving the hydraulic model was developed in Fuzhou City, China. This model was established to minimize the total present costs, including intervention costs and flooding costs, with full consideration of the constraints of specific local conditions. The results show that considerable financial savings could be achieved by a staged design rather than the implement-once scheme. The model’s sensitivities to four data parameters were analyzed, including rainfall increase rate, flood unit cost, storage unit cost, and discount rate. The results confirm the applicability and robustness of the model for updating drainage systems to meet the requirements. The findings of this study may have important implications on urban flood management in the cities of developing countries with limited construction investments.
机译:近年来,在中国大多数城市中,洪水的报导比过去更多。作为回应,中国国务院已敦促36个最大的城市更新应对50年降雨的准备,这将是一项耗资巨大的大型项目。我们提出了分阶段的优化设计来更新城市排水系统,这不仅是应对环境变化的灵活选择,而且还是降低项目成本的有效方法。在中国福州市开发了涉及水力模型的分阶段成本优化模型。建立该模型的目的是在充分考虑特定本地条件的限制的情况下,将当前的总成本(包括干预成本和洪水成本)降至最低。结果表明,通过分阶段设计而不是一次性实施方案,可以节省大量的资金。分析了该模型对四个数据参数的敏感性,包括降雨增加率,洪水单位成本,存储单位成本和贴现率。结果证实了该模型用于更新排水系统以满足要求的适用性和鲁棒性。这项研究的结果可能对建设投资有限的发展中国家城市的城市洪水管理产生重要影响。

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