ZHANNan,HUANGJun-xiong,YULei,et al.Implementation Path and Effects of Beijing’s Sponge City Construction[J].China Water & Wastewater,2025,41(6):41-45.
北京市海绵城市建设实施路径与成效
- Title:
- Implementation Path and Effects of Beijing’s Sponge City Construction
- Keywords:
- sponge city; implementation path; construction effect
- 摘要:
- 自2013年海绵城市建设理念首次提出以来,北京市紧紧围绕首都城市战略定位,坚持“源头减排、过程控制、系统治理”思路,逐步补足基础设施短板、不断完善机制体制、强化雨水径流管控。在试点区带动下,北京市的海绵城市已经步入全域系统化推进、精细化管控阶段。截至2022年12月,北京市建成区年径流总量控制率在70%以上的区域面积达444.39 km2,形成“大、小海绵体”相互融合的整体格局,绿地、天然水体与源头透水铺装、绿化屋顶等可渗透面积占比约40%。实践表明,海绵城市建设对控制降雨径流、缓解积水内涝、汛期面源污染控制等方面成效显著,有力保障了首都水安全、改善了河湖水环境、提升了市民满意度。
- Abstract:
- Since the concept of sponge city was first proposed in 2013, Beijing has been focusing on the strategic positioning of the capital city, adhering to the concept of “emission reduction at the source, process control, and systematic governance”. The city has gradually addressed infrastructure deficiencies, continuously improved mechanisms and systems, and strengthened the management and control of rainwater runoff. Driven by the pilot areas, Beijing’s sponge city has entered the phase of comprehensive systematization and refined management. As of December 2022, the area of Beijing built?up areas with an annual runoff control rate of over 70% has reached 444.39 km2, forming an overall patternof big and small sponges integration, with the permeable areas of green spaces, natural water bodies, and source permeable pavement, and green roof accounting for about 40%. The sponge city construction has achieved remarkable results in controlling rainfall runoff, alleviating waterlogging, and managing non-point source pollution during the flood season. These efforts have contributed to ensuring water safety in the capital, improving the water environment of rivers and lakes, and enhancing citizen satisfaction.
相似文献/References:
[1]吴耀珊,计波,刘卓成.透水砖材料和下垫面对城市雨洪的影响[J].中国给水排水,2018,34(21):133.
WU Yao shan,JI Bo,LIU Zhuo cheng.Influence of Permeable Brick Material and Underlying Surface on Urban Stormwater[J].China Water & Wastewater,2018,34(6):133.
[2]汤忠,张亮,俞露,等.南方某滨海机场海绵建设策略探索[J].中国给水排水,2018,34(20):1.
TANG Zhong,ZHANG Liang,YU Lu,et al.Exploration on the Sponge Construction Strategies of a Coastal Airport in South China[J].China Water & Wastewater,2018,34(6):1.
[3]李胜海,陈思,白静,等.山地城市市政道路低影响开发雨水系统设计与构建[J].中国给水排水,2018,34(20):60.
LI Sheng hai,CHEN Si,BAI Jing,et al.Design and Construction of Stormwater Systems for Low-Impact-Development of Municipal Roads in Mountainous City[J].China Water & Wastewater,2018,34(6):60.
[4]许可,郭迎新,吕梅,等.对完善我国海绵城市规划设计体系的思考[J].中国给水排水,2020,36(12):1.
XU Ke,GUO Ying-xin,Lü Mei,et al.Thinking on Improving Sponge City Planning and Design System in China[J].China Water & Wastewater,2020,36(6):1.
[5]杨文辉,张伟,张海行,等.常州海绵城市试点区建设中的闲置用地近远期管控[J].中国给水排水,2020,36(14):1.
YANG Wen-hui,ZHANG Wei,ZHANG Hai-xing,et al.Short-and Long-term Control of Idle Land in the Construction of Changzhou Sponge City Pilot Area[J].China Water & Wastewater,2020,36(6):1.
[6]聂超,周丹,林韵婕,等.建筑与小区低影响开发设计问题及对策[J].中国给水排水,2020,36(14):6.
NIE Chao,ZHOU Dan,LIN Yun-jie,et al.Design Problems and Countermeasures of Low Impact Development in Buildings and Communities[J].China Water & Wastewater,2020,36(6):6.
[7]张伟,王翔.基于海绵城市建设理念的慈城新城水安全系统构建[J].中国给水排水,2020,36(14):12.
ZHANG Wei,WANG Xiang.Construction of Cicheng New Town Drainage Safety System Based on Sponge City Concept[J].China Water & Wastewater,2020,36(6):12.
[8]张净,崔建军,蒋礼兵,等.基于窄带物联网的海绵城市滤水养鱼智能监控系统设计[J].中国给水排水,2020,36(14):61.
ZHANG Jing,CUI Jian-jun,JIANG Li-bing,et al.Design of Intelligent Monitoring System for Fish Culture in Filtered Water of Sponge City Based on Narrow-band Internet of Things (NB-IoT)[J].China Water & Wastewater,2020,36(6):61.
[9]李国君,王永,梁振凯,等.海绵城市建设区域化效果评估探讨[J].中国给水排水,2020,36(14):76.
LI Guo-jun,WANG Yong,LIANG Zhen-kai,et al.Evaluation of Regionalized Effect of Sponge City Construction[J].China Water & Wastewater,2020,36(6):76.
[10]方帅,徐洁,刘绪为,等.镇江虹桥港上游黑臭水体系统性治理工程设计[J].中国给水排水,2020,36(14):94.
FANG Shuai,XU Jie,LIU Xu-wei,et al.Project Design of Systematic Treatment of Black-smelly Water Body in Upstream of Hongqiaogang, Zhenjiang City[J].China Water & Wastewater,2020,36(6):94.