Sponge city practice in China: A review of construction, assessment, operational and maintenance

处置模式 低影响开发 城市化 环境规划 地铁列车时刻表 排水 大洪水 土木工程 环境科学 地表径流 环境资源管理 计算机科学 雨水 工程类 地理 生态学 生物 操作系统 经济增长 经济 考古 程序设计语言 雨水管理
作者
Dingkun Yin,Ye Chen,Haifeng Jia,Qi Wang,Zhenxia Chen,Changqing Xu,Qian Li,Wenliang Wang,Yang Ye,Guangtao Fu,Albert Chen
出处
期刊:Journal of Cleaner Production [Elsevier]
卷期号:280: 124963-124963 被引量:132
标识
DOI:10.1016/j.jclepro.2020.124963
摘要

As the global climate change and the rapid progress of urbanization, the frequent occurrence of flooding disasters and non-point source pollution seriously threaten the sustainable development of modern cities. To alleviate these problems, China started to pilot construction of the “Sponge City” (SPC). Over a decade, it has attracted public attention, supports, and participations. The paper presents a literature review of sponge city construction (SPCC) process (planning, design and construction) as well as the assessment of SPC, including: operation, maintenance, and effectiveness. Research gap and future works are also proposed. The paper offers some tactics for SPCC, including: 1) in the planning and construction stage of SPC, the goals and systematic plans should be formulated according to local water-environmental conditions. The drainage plan should cover the strategy to dispose runoff volumes at sources and the ultimately goal for flood mitigation. The drainage design involves the combination of various green and grey infrastructures; 2) It is important to identify monitoring methods and hydrological models which can be used to assess the performance of a SPC. With adequate field data, all models and methods should be calibrated for not only runoff quantity and quality control but also the alleviation of urban heat island effects, including the base flows and local groundwater table; 3) Based on the regional field data, it is necessary to standardize regional design parameters, construction material specifics, and maintenance scheme and schedule that would significantly affect the facility’s infiltrating and filtering processes, therefore, a regular maintenance program should be initiated to monitor the operations of the as-built facilities according to local climate conditions. The paper evaluated several maintenance methods for ten typical facilities to provide a reference for the operation and maintenance of facilities in SPCC.
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