Control de escorrentías urbanas mediante Sistemas Urbanos de Drenaje Sostenible (SUDS): Pozos/Zanjas de infi ltración

IF 0.3 Q4 ENGINEERING, MULTIDISCIPLINARY ENTRE CIENCIA E INGENIERIA Pub Date : 2018-12-12 DOI:10.31908/19098367.3813
Elkin Cubides, G. Santos
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引用次数: 1

Abstract

In the framework of the efficient management of water resources and the environment, the control of the surface runoff is an area of study of great importance in the development of cities, because their exponential growth and the increase of non-permeable hard zones produces greater runoff transport times. Thus, environmental and economic implications are generated that leads to the implementation of mayor structures for the respective transport. When the control by these elements is not possible, fl ood phenomena aff ect the quality of life of the population and emergency plans for these risks must be generated. The implementation of alternative sustainable drainage systems such as Sustainable Urban Drainage Systems (SUDS) allows to reduce and to delay the storm surges that occur in. Next, an analysis of results related to hydraulic and hydrological modeling and the EPA-SWMM, a program developed by the United States Environmental Protection Agency (EPA) for the analysis of rainfall and hydraulic behavior of networks of Sewerage.
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通过可持续城市排水系统(SUDS)控制城市径流:渗水井/沟渠
在水资源和环境的有效管理框架内,地表径流的控制是城市发展中一个非常重要的研究领域,因为城市的指数增长和不透水硬区的增加产生了更大的径流输送时间。因此,产生了环境和经济影响,导致实施各自交通的市长结构。当这些因素无法控制时,就会出现影响人口生活质量的良好现象,必须制定应对这些风险的应急计划。实施替代可持续排水系统,如可持续城市排水系统(SUDS),可以减少和延迟年发生的风暴潮。接下来,分析与水力和水文建模以及EPA-SWMM相关的结果,由美国环境保护局(EPA)开发的一个程序,用于分析下水道网络的降雨和水力行为。
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来源期刊
ENTRE CIENCIA E INGENIERIA
ENTRE CIENCIA E INGENIERIA ENGINEERING, MULTIDISCIPLINARY-
自引率
50.00%
发文量
8
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