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用于流域尺度城市暴雨洪水缓解目标的水敏感城市设计(WSUD)规划框架。

A water sensitive urban design (WSUD) planning framework for catchment-scale urban pluvial flood mitigation targets.

作者信息

Wu Wenhui, Jamali Behzad, Marshall Lucy, Deletic Ana, Zhang Kefeng

机构信息

Water Research Centre, School of Civil and Environmental Engineering, UNSW Sydney, Australia.

WMAwater Pty Ltd, Australia.

出版信息

Water Res. 2025 Oct 1;285:124095. doi: 10.1016/j.watres.2025.124095. Epub 2025 Jun 23.

Abstract

Water Sensitive Urban Design (WSUD) offers a promising solution for urban pluvial flood mitigation. While the existing target-oriented approach is effective for rapid WSUD planning for stormwater quality and quantity control, it struggles with pluvial flooding reduction objectives due to the complex interactions with stormwater drainage networks across a catchment. We propose a novel framework that advances WSUD planning for flood mitigation by generating a pool of cost-effective strategies aimed at reducing flood damage return periods. These target-driven strategies involve the strategic placement of WSUD across the catchment with detailed designs to achieve maximum flood damage reduction, using newly generated design curves that link WSUD's effective storage capacity to its performance in runoff volume reduction. Application of this framework to an urban catchment in Sydney, Australia demonstrated high success rates of WSUD strategies that maximised flood volume reduction at equivalent costs, effectively achieving four flood mitigation targets. Life-cycle cost-benefit analysis highlighted the importance of adequate bioretention storage capacity for long-term cost-effectiveness, and suggested aligning WSUD planning with existing drainage network capacity for optimal economic outcomes. The substantial variations in WSUD configurations among the cost-effective strategies underscore the framework's ability to provide flexible strategies for meeting unique subcatchment conditions and diverse stakeholder needs. The framework serves as a valuable tool for realising exploratory WSUD planning, with strong adaptability to diverse catchments, climates and future conditions, helping to maximise WSUD's flood mitigation potential.

摘要

城市水敏感设计(WSUD)为缓解城市雨洪提供了一个有前景的解决方案。虽然现有的目标导向方法对于快速进行雨水水质和水量控制的WSUD规划是有效的,但由于与集水区内雨水排水网络的复杂相互作用,在减少雨洪方面面临困难。我们提出了一个新颖的框架,通过生成一系列旨在减少洪水损失重现期的具有成本效益的策略,推进WSUD的防洪规划。这些目标驱动的策略包括在集水区内战略性地布置WSUD,并进行详细设计,以实现最大程度的洪水损失减少,利用新生成的设计曲线将WSUD的有效存储容量与其在减少径流量方面的性能联系起来。将该框架应用于澳大利亚悉尼的一个城市集水区,结果表明WSUD策略在同等成本下实现最大洪水总量减少方面成功率很高,有效地实现了四个防洪目标。生命周期成本效益分析突出了足够的生物滞留存储容量对于长期成本效益的重要性,并建议将WSUD规划与现有排水网络容量相结合以实现最佳经济成果。在具有成本效益的策略中,WSUD配置的显著差异凸显了该框架为满足独特的子集水区条件和不同利益相关者需求提供灵活策略的能力。该框架是实现探索性WSUD规划的宝贵工具,对不同的集水区、气候和未来条件具有很强的适应性,有助于最大限度地发挥WSUD的防洪潜力。

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