Nature-Based Solutions: Construction Method of Major Drainage System in Plain Lake-type Cities

Xueyuan Wang, Yan Zhou, Jianing Yu
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Abstract

As a typical fast-growing plain city with the title of “city of hundreds of lakes”, Wuhan, Hubei Province in China, boasts abundant regulating and storing water space. However, this city has suffered from frequent waterlogging and unbalanced storage due to rapid urbanization. To tackle the issue, this study inspired by the idea of “Nature-Based Solutions” (NBS). Taking the major drainage system of Wuhan as an example, it explored the identification and construction of storage and drainage area as well as the planning strategies in the city scale, based on a sustainable urban stormwater system cycle compatible with artificial deployment and natural stormwater process. The stormwater process is simulated with numerical inverse method. Then the drainage network and the natural force get a balance in the system. The result showed that: 1) With the SCS-CN model and surface equal volume filling method, the spaces storing excess surface runoff were identified under the geography and storm recurrence interval; 2) Combining the data of construction land, actual submergence area, and waterlogging points, the major drainage system with emphasis on the restriction of surface elevation were organized. 3) The “storage and drainage function area of major drainage system” was proposed as a NBS. The hierarchical distribution was adopted for layout optimization of urban land use in Wuhan—include the area of storage and drainage, area of strengthened self-drainage, area of waterlogging reduction, and area of low intensity development. Furthermore, it also offered references to the identification and improvement of waterlogging risk points of public facilities in built area.
基于自然的解决方案:平原湖型城市主要排水系统的建设方法
中国湖北省武汉市是一个典型的快速发展的平原城市,有着“百湖之城”的称号,拥有丰富的调蓄水空间。然而,由于快速的城市化,这座城市遭受了频繁的内涝和不平衡的储存。为了解决这个问题,本研究受到了“基于自然的解决方案”(NBS)的启发。以武汉市主要排水系统为例,基于与人工调配和自然雨水过程相兼容的可持续城市雨水系统循环,探索城市尺度上的储排水区识别、建设及规划策略。采用数值反演方法对暴雨过程进行了模拟。然后排水网络和自然力量在系统中得到平衡。结果表明:1)利用SCS-CN模型和地表等体积填充法,确定了不同地理条件和暴雨重现期下的地表多余径流存储空间;2)结合建设用地、实际淹没面积和内涝点数据,组织了以地表高程限制为重点的主要排水系统。(3)提出“主要排水系统储排水功能区”作为国家统计局。武汉市城市土地利用采用分级布局优化,即涵蓄区、强化自排水区、减涝区、低强度开发区。为建成区公共设施内涝风险点的识别与改善提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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