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DOI10.15244/pjoes/99105
Return Period for Urban Rainwater Drainage Networks Based on the Lowest Total Social Investment Method: A Case Study in Tianjin, China
Yang, Yanjuan; Li, Mingcai; Xiong, Mingming; Cao, Jingfu
发表日期2019
ISSN1230-1485
EISSN2083-5906
卷号28期号:5页码:3993-3999
英文摘要

Waterlogging is related to rainfall intensity as well as drainage network design. In previous studies, rainfall intensity was dominantly considered, while the design return period with the lowest total social investment of drainage networks was generally neglected. In this study, Guangkai Street in Tianjin in northern China was selected as a case study to determine the optimal design return period of drainage networks. According to the drainage networks for different design return periods, the depth of waterlogging was simulated based on the FloodArea model under the conditions of the rainfall exceeding the design return period. Furthermore, traffic losses due to waterlogging were determined by using the traffic loss model. When the sum of traffic losses and drainage network investment is smallest (i.e., the lowest total social investment), the corresponding return period is considered as the optimal design return period of drainage networks. By comparing the simulated depths of waterlogging and observations of 17 waterlogging monitoring points, we found that the FloodArea model has efficient simulation in most areas. Accordingly, the FloodArea model was used to simulate the depths of waterlogging with different return periods in Guangkai Street. The results show that the total social investment, including traffic losses and initial investment of drainage networks, is the lowest with the return period of the drainage networks in the selected area being designed as 5 years. This suggests that the design return period of the drainage networks in Guangkai Street should be upgraded to 5 years. The approach in this study is based on high-precision simulation (1 m GIS data) and actual waterlogging depth to ensure the accuracy of simulation. The optimal design return period is calculated in combination with traffic losses and initial investment of drainage networks, providing reference for the design of drainage networks in specific areas.


WOS研究方向Environmental Sciences & Ecology
来源期刊POLISH JOURNAL OF ENVIRONMENTAL STUDIES
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/91021
作者单位Tianjin Climate Ctr, Tianjin, Peoples R China
推荐引用方式
GB/T 7714
Yang, Yanjuan,Li, Mingcai,Xiong, Mingming,et al. Return Period for Urban Rainwater Drainage Networks Based on the Lowest Total Social Investment Method: A Case Study in Tianjin, China[J],2019,28(5):3993-3999.
APA Yang, Yanjuan,Li, Mingcai,Xiong, Mingming,&Cao, Jingfu.(2019).Return Period for Urban Rainwater Drainage Networks Based on the Lowest Total Social Investment Method: A Case Study in Tianjin, China.POLISH JOURNAL OF ENVIRONMENTAL STUDIES,28(5),3993-3999.
MLA Yang, Yanjuan,et al."Return Period for Urban Rainwater Drainage Networks Based on the Lowest Total Social Investment Method: A Case Study in Tianjin, China".POLISH JOURNAL OF ENVIRONMENTAL STUDIES 28.5(2019):3993-3999.
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