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An environmental fairness based optimisation model for the decision-support of joint control over the water quantity and quality of a river basin

机译:基于环境公平的流域水量水质联合控制决策支持优化模型

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This paper presented a new environmental fairness based optimisation model (EFOM) for the decision support of water resources management and water pollution control at the watershed scale. The model integrated three prediction modules for water consumption and pollutant discharge (WCPD), environmental Gini coefficient (EGC) and water quality (WASP). The model is capable of optimizing the total discharge quantity in the whole basin and controlling units both spatially and temporally, and addressing the conflicts between environmental fairness and efficiency. The model was applied to the Songhua River basin, attempting to support decision-making of joint control over the water quantity and quality. Validation of the WASP module showed that the simulation agreed well with water quality monitoring values (2013) in the Harbin section. Results from the EFOM model also indicated that the water environment in the Harbin section would be improved significantly by effectively controlling the total pollution discharge. The identified optimal strategy obtained from the EFOM showed that the percentage of water in good quality reaches 72% in 2020, suggesting that the strategy would guarantee the planning goals of The China Action Plan for Water Pollution Control to be satisfied. Hence, the modelling under the consideration of environmental fairness can be a new attempt, which is beneficial to optimal joint control of water quantity and water quality at the watershed scale. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文提出了一种新的基于环境公平的优化模型(EFOM),用于流域尺度上水资源管理和水污染控制的决策支持。该模型集成了三个预测模块,分别用于耗水量和污染物排放量(WCPD),环境基尼系数(EGC)和水质(WASP)。该模型能够优化整个流域的总排放量,并在空间和时间上控制单位,并解决环境公平与效率之间的矛盾。该模型被应用于松花江流域,试图为联合控制水量和水质的决策提供支持。 WASP模块的验证表明,模拟与哈尔滨部分的水质监测值(2013年)非常吻合。 EFOM模型的结果还表明,通过有效控制总污染排放,哈尔滨段的水环境将得到显着改善。从EFOM确定的最佳策略表明,到2020年,优质水的比例将达到72%,这表明该策略将确保满足《中国水污染防治行动计划》的规划目标。因此,考虑环境公平性的建模可能是一种新的尝试,有利于分水岭规模水量和水质的最优联合控制。 (C)2016 Elsevier B.V.保留所有权利。

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