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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Development of a constructed wetland network for mitigating nonpoint source pollution through a GIS-based watershed-scale inexact optimization approach
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Development of a constructed wetland network for mitigating nonpoint source pollution through a GIS-based watershed-scale inexact optimization approach

机译:通过基于GIS的分水岭规模不精确优化方法开发人工湿地网络以缓解面源污染

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In this research, a hybrid Geographic Information System (GIS)-based watershed-scale inexact optimization approach was developed to identify the optimal spatially distributed network of constructed wetlands for NPS pollution control. Such an approach combined the GIS technology and fuzzy-stochastic two-stage programming (FSTP) into a general optimization framework. A GIS-based compound topographic index (CTI) was used to identify potential wetland sites at thewatershed-scale, a GIS-based export coefficient model (ECM) was employed to estimate the nutrient load from NPS pollution, and the FSTP was used to map the optimal spatially distributed network of constructed wetlands for reducing the NPS pollution with the minimization of system costs under uncertainty. As an integration of two-stage stochastic programming (TSP) and fuzzy credibility chance-constrained programming (FCCP), FSTP can not only address dual uncertainties expressed as probability density functions and fuzzy membership functions but also provide an effective linkage between the pre-regulated management policies and the associated economic implications. The developed modeling system was applied to the planning of wetland network installation in the Songhuaba watershed, China. The optimization results can help watershed managers to obtain desired plans of wetland siting, and nutrient permit allocation for sub-basins under different confidence levels. (C) 2015 Published by Elsevier B.V.
机译:在这项研究中,开发了一种基于混合地理信息系统(GIS)的分水岭规模不精确优化方法,以确定用于NPS污染控制的人工湿地的最佳空间分布网络。这种方法将GIS技术和模糊随机两阶段编程(FSTP)结合到一个通用的优化框架中。使用基于GIS的复合地形指数(CTI)识别流域尺度上的潜在湿地地点,基于GIS的出口系数模型(ECM)估算NPS污染中的养分负荷,并使用FSTP绘制地图优化的人工湿地空间分布网络,以减少NPS污染,并在不确定性下将系统成本降至最低。作为两阶段随机规划(TSP)和模糊可信度机会约束规划(FCCP)的集成,FSTP不仅可以解决表示为概率密度函数和模糊隶属函数的双重不确定性,而且还可以在预调节之间提供有效的联系。管理政策及其相关的经济影响。所开发的建模系统已应用于中国松花坝流域的湿地网络安装规划。优化结果可以帮助流域管理者获得所需的湿地选址计划,并在不同置信度下为流域的养分分配。 (C)2015由Elsevier B.V.发布

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