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A new rule generation method to develop a decision support system for integrated management at river basin scale

机译:开发流域规模综合管理决策支持系统的新规则生成方法

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摘要

The Besos River Basin authority is working towards the implementation of integrated river basin management, as required by the Water Framework Directive (WFD), to achieve a good ecological and chemical status of all water bodies by 2015. The studied system is constituted by two communities (La Garriga and Granollers), their corresponding draining catchments, sewer systems and two WWTPs, which discharge treated water at different locations of the same river. Within this context, the realisation of an integrated model of the river stretch and of the two WWTPs with their sewer systems and draining catchments was necessary. Such a model allows to efficiently simulate and analyse the behaviour of the integrated system and to optimize its performance holistically. In this article, a method is presented to generate rules to be implemented in a supervisory system for automatic management of the Integrated Urban Wastewater System (IUWS) in dry and storm weather. This is achieved by identifying, with the help of Monte Carlo simulations, the most performing operational parameters-according to environmental and economic criteria-for the two weather conditions.
机译:贝索斯河流域管理局正在按照水框架指令(WFD)的要求,努力实施流域综合管理,以在2015年前实现所有水体的良好生态和化学状况。研究的系统由两个社区组成(La Garriga和Granollers),它们相应的排水集水区,下水道系统和两个污水处理厂,它们在同一条河流的不同位置排放经处理的水。在这种情况下,有必要建立一条河段和两个污水处理厂及其下水道系统和排水集水区的综合模型。这种模型可以有效地模拟和分析集成系统的行为,并从整体上优化其性能。在本文中,提出了一种生成规则的方法,该规则将在干旱和暴风雨天气中自动管理城市综合废水系统(IUWS)的管理系统中实现。这是通过在蒙特卡洛模拟的帮助下确定两种天气条件下性能最佳的运行参数(根据环境和经济标准)来实现的。

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