A novel spatial optimization approach for the cost-effectiveness improvement of LID practices based on SWMM-FTC

雨水管理模型 地表径流 分类 数学优化 计算机科学 低影响开发 多目标优化 环境科学 雨水 算法 数学 生态学 雨水管理 生物
作者
Shanshan Li,Zhaoli Wang,Xushu Wu,Zhaoyang Zeng,Ping Shen,Chengguang Lai
出处
期刊:Journal of Environmental Management [Elsevier BV]
卷期号:307: 114574-114574 被引量:60
标识
DOI:10.1016/j.jenvman.2022.114574
摘要

Due to the increasingly frequent occurrence of urban waterlogging, the spatial optimization of low impact development (LID) practices has been commonly used to detain and reduce storm water runoff in the most cost-effective way. In this study, the flow transmission chain (FTC) was proposed to replace the routing portion of the Storm Water Management Model (SWMM) and was combined with the runoff component of the SWMM to simulate LID practices (SWMM-FTC). In the SWMM-FTC, the third Evolution Step of Generalized Differential Evolution (GDE3) was employed to optimize the LID layout design. The results showed that the relative error between the modified SWMM-FTC and the calibrated SWMM was less than 0.25% under various LID scenarios, and the computational efficiency of the SWMM-FTC was improved by 19.3 times. Moreover, the GDE3 outperformed the commonly used non-dominated sorting genetic algorithm (NSGA-II), the strength Pareto evolutionary algorithm (SPEA2), and the multi-objective shuffled frog leaping algorithm (MOSFLA) due to its ability to find the most cost-effective solution. The LID layout obtained from the SWMM-FTC with the GDE3 saved $210-1067 to achieve a 1% reduction in storm water runoff. This result demonstrates that the SWMM-FTC with the GDE3 can achieve higher environmental benefits than comparable models, providing better guidance for managers and stakeholders.
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