应对极端降雨的城市蓄排系统设计与发展趋势
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重庆大学环境与生态学院

作者简介:

邵知宇( 1975 - ),女,四川广安人,教授,博士生导师,美国高级注册工程师,主要研究方向为城市防洪排涝、海绵城市、低影响开发、水文水力数值模型及优化计算等领域。 E-mail:shaozhiyu@cqu.edu.cn

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中图分类号:

TU997

基金项目:

国家重点研发计划项目;重庆市重点研发计划项目


Design and Development Trends of Urban Storage-Drainage Systems for Extreme Rainfall Events
Author:
Affiliation:

College of Environment and Ecology, Chongqing University

Fund Project:

National Key Research and Development Program of China, 2022YFC3800500;Key Research and Development Program of Chongqing, CSTB2023TIAD-KPX0079

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    摘要:

    随着全球气候变化和城市化进程,极端降雨事件日益频发,城市内涝风险显著增加。传统以城市管网为主的小排水系统面对超标暴雨时韧性不足,而大排水系统作为调蓄与排放功能协同的复合型设施,已成为提升城市排涝能力和韧性建设的重要组成部分。文章系统梳理了大排水系统研究现状,重点综述了雨水调蓄池与道路大排水系统的优化设计方法,涵盖了调蓄设施布局、多功能调蓄空间利用、道路排水风险评估与智能优化算法应用等关键内容。研究表明,智能优化方法正逐步取代传统经验设计,推动城市排涝体系向数据驱动与协同治理方向演进。最后,文章从智能调度、优化框架泛化与蓄排协同等角度提出未来研究展望,旨在为城市大排水系统的科学设计与韧性提升提供理论支持与技术参考。

    Abstract:

    Global climate change and accelerated urbanization have led to increased frequency of extreme rainfall events, significantly elevating urban flood risks. Conventional minor drainage systems, which predominantly rely on pipeline networks, demonstrate considerable limitations under extreme rainfall conditions. In contrast, major drainage systems (MDS) with integrated storage and drainage functions are increasingly recognized as a crucial approach for enhancing urban flood resilience. This article provides a systematic review of recent research developments in this domain, focusing specifically on optimized design methodologies for stormwater detention tanks and road-based MDS. Key aspects addressed include optimal layout of storage facilities, development of multi-functional storage spaces, risk assessment of road drainage systems, and the application of intelligent optimization algorithms. Results indicate that data-driven intelligent optimization and real-time control (RTC) are transcending the constraints of traditional empirically based design approaches, facilitating the transition of urban drainage systems toward smarter, more adaptive, and coordinated operations. Finally, the study outlines future research directions, including enhanced RTC strategies, generalization of cross-scenario optimization frameworks, and improved synergy between storage and drainage infrastructure. These insights aim to offer theoretical and technical references for developing advanced urban MDS capable of addressing challenges posed by extreme rainfall.

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  • 收稿日期:2025-09-02
  • 最后修改日期:2025-11-29
  • 录用日期:2026-01-04
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