Suppr超能文献

运用多目标优化实现低影响开发以控制城市雨水的水量和水质。

Optimal implementation of low impact development for urban stormwater quantity and quality control using multi-objective optimization.

机构信息

Water Resources Engineering, Civil Engineering, Institute for Advanced Studies (IAS), University of Malaya, 50603, Kuala Lumpur, Malaysia.

Civil Engineering Department, Faculty of Engineering, University of Malaya, 50603, Kuala Lumpur, Malaysia.

出版信息

Environ Monit Assess. 2021 Mar 31;193(4):241. doi: 10.1007/s10661-021-09010-4.

Abstract

Stormwater runoff is a major concern in urban areas which is mostly the result of vast urbanization. To reduce urban stormwater runoff and improve water quality, low impact development (LID) is used in urban areas. Therefore, it is vital to find the optimal combination of LID controls to achieve maximum reduction in both stormwater runoff and pollutants with optimal cost. In this study, a simulation-optimization model was developed by linking the EPA Storm Water Management Model (SWMM) to the Multi-Objective Particle Swarm Optimization (MOPSO) using MATLAB. The coupled model could carry out multi-objective optimization (MOO) and find potential solutions to the optimization objectives using the SWMM simulation model outputs. The SWMM model was developed using data from the BUNUS catchment in Kuala Lumpur, Malaysia. The total suspended solids (TSS) and total nitrogen (TN) were selected as pollutants to be used in the simulation model. Vegetated swale and rain garden were selected as LID controls for the study area. The LID controls were assigned to the model using the catchment characteristics. The target objectives were to minimize peak stormwater runoff, TSS, and TN with the minimum number of LID controls applications. The LID combination scenarios were also tested in SWMM to identify the best LID types and combination to achieve maximum reduction in both peak runoff and pollutants. This study found that the peak runoff, TSS, and TN were reduced by 13%, 38%, and 24%, respectively. The optimal number of LID controls that could be used at the BUNUS catchment area was also found to be 25.

摘要

雨水径流是城市地区的主要关注点,主要是城市化进程的结果。为了减少城市雨水径流和改善水质,低影响开发(LID)被用于城市地区。因此,找到 LID 控制的最佳组合以实现最大程度地减少雨水径流和污染物,同时实现最佳成本,这一点至关重要。本研究通过将美国环保署雨水管理模型(SWMM)与 MATLAB 中的多目标粒子群优化(MOPSO)相链接,开发了一种模拟-优化模型。耦合模型可以使用 SWMM 模拟模型输出执行多目标优化(MOO)并找到优化目标的潜在解决方案。SWMM 模型是使用马来西亚吉隆坡 BUNUS 集水区的数据开发的。总悬浮固体(TSS)和总氮(TN)被选为要在模拟模型中使用的污染物。植被洼地和雨水花园被选为研究区域的 LID 控制措施。使用集水区特征为模型分配 LID 控制措施。目标是通过使用最少数量的 LID 控制措施应用来最小化峰值雨水径流、TSS 和 TN。还在 SWMM 中测试了 LID 组合方案,以确定最佳的 LID 类型和组合,以实现最大程度地减少峰值径流和污染物。本研究发现,峰值径流、TSS 和 TN 分别减少了 13%、38%和 24%。还发现 BUNUS 集水区可以使用的最佳 LID 控制措施数量为 25 个。

相似文献

5
Field monitoring of a LID-BMP treatment train system in China.中国一个低影响开发-生物滞留池处理系统的现场监测
Environ Monit Assess. 2015 Jun;187(6):373. doi: 10.1007/s10661-015-4595-2. Epub 2015 May 26.

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验