雨水
弹性(材料科学)
低影响开发
风暴
计算机科学
可靠性工程
生命周期成本分析
冗余(工程)
地表径流
雨水管理
业务
风险分析(工程)
环境资源管理
环境科学
工程类
地理
气象学
物理
热力学
生物
生态学
作者
Mo Wang,Yu Zhang,Dongqing Zhang,Yingsheng Zheng,Shan Li,Soon Keat Tan
标识
DOI:10.1016/j.scs.2021.103358
摘要
Abstract Recent studies have suggested that coupling grey infrastructure (GREI) with low-impact development may be a promising approach to urban stormwater management. However, comprehensive assessment of the hydrological resilience of such a coupled-system is challenging, and this limits planning and implementation. In this paper the authors developed an innovative approach to measure and optimise life cycle costs for layouts with different levels of decentralisation under the constraint of hydrological reliability, and assess their technology-based and operational resilience. The authors found that coupled solutions implemented in a high-density catchment are economically competitive compared with conventional GREI. Based on the findings of risk scenario modeling, the coupled-systems show better technology-based resilience to extreme weather, except during extreme storms (rainfall of 50-year recurrence interval with 24-hr storm duration). Regarding operational resilience (versus structural failure), coupled-systems incorporating source control and pathway drainage with higher redundancy are more robust than GREI-only system. Decentralisation with optimised layouts does not significantly improve system resilience. This methodology could be a helpful decision-making tool in developing strategies to manage stormwater runoff for better hydrological resilience in high-density urban catchments.
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