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不同雨强下海绵城市道路雨水迁移规律研究。

Investigation of migration rule of rainwater for sponge city roads under different rainfall intensities.

机构信息

College of Civil Engineering and Architecture, Shandong University of Science and Technology, No.579 Qianwangang Road, Huangdao District, Qingdao, 266590, Shandong Province, China.

Shandong Key Laboratory of Civil Engineering Disaster Prevention and Mitigation, Shandong University of Science and Technology, Qingdao, 266590, China.

出版信息

Environ Geochem Health. 2022 Oct;44(10):3395-3407. doi: 10.1007/s10653-021-01104-9. Epub 2021 Oct 4.

Abstract

Urban development and climate change have led to severe waterlogging in cities. To study the degree of mitigation of urban waterlogging using the design of sponge city roads, this study employed No. 9 Road in the Sino-German Eco-park. By establishing the scaled physical model, the pavement structure of the sponge city road was optimized. Furthermore, water migration (seepage, impoundment, and drainage) rule was obtained under different rainfall intensities using the optimal pavement scheme. The following conclusions were drawn from the studies. Good permeability of the sidewalk surface structure is conducive for rainwater collection. The sponge urban road rainwater collection and utilization system could absorb up to 88% of rainwater under the rainfall intensity of 173 mm (extra heavy rain), and could absorb up to 100% of rainwater under heavy rain conditions. The seepage volume increased exponentially with the rise in rainfall intensity, and the amount of water storage increased linearly with the rainfall intensity. These results can provide guidance for safety early warning of urban waterlogging on No. 9 Road in the Sino-German Eco-park and deeper insights in the design of sponge city roads.

摘要

城市发展和气候变化导致城市内涝严重。为研究海绵城市道路设计对城市内涝的缓解程度,本研究选取中德生态园九号路为研究对象。通过建立比尺物理模型,优化了海绵城市道路的路面结构。进一步采用最优路面方案,得到了不同降雨强度下的路面水迁移(渗流、积水和排水)规律。研究得出:人行道表面结构具有良好的渗透性有利于雨水收集。在降雨强度为 173mm(特大暴雨)时,海绵城市道路雨水收集利用系统可吸收高达 88%的雨水,在暴雨条件下可吸收高达 100%的雨水。渗流量随降雨强度呈指数增长,蓄水量随降雨强度呈线性增长。这些结果可为中德生态园九号路城市内涝安全预警提供指导,对海绵城市道路设计具有更深的启示。

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