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The scope of integrated modelling: system boundaries, sub-systems, scales and disciplines

机译:集成建模的范围:系统边界,子系统,规模和学科

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摘要

Integrated modelling has become an urgent issue of urban drainage and wastewater treatment planning. The scope of integrated modelling, system boundaries and disciplines to be involved are addressed in view of future developments and new paradigms in urban drainage, demanding the inclusion of the full urban water cycle. A system analysis is demonstrated to identify relevant sub-systems and components, processes and interactions within the urban water system. The permissibility to exclude subsystems or neglect interactions is evaluated. Integrated modelling of urban water system is characterised as an ambitious task in regard to system complexity, heterogeneous scales and interface problems. The methodical status quo is characterised in preliminary approaches towards integrated modelling. It is concluded that it does not seem promising to create and apply one entity model for the scope of integrated urban water modelling. Instead, the development of adequate and efficient IT frameworks is identified as the key issue of integrated modelling. Harmonising interfaces to facilitate the linking of existing models is presented as the objective of a European research project HarmonlT and the U.S. EPA Multimedia Integrated Modelling System project MIMS.
机译:集成建模已成为城市排水和废水处理规划的紧迫问题。鉴于未来的发展和城市排水的新范式,需要解决的综合建模范围,系统边界和学科将涉及整个城市水循环。演示了系统分析,以识别城市供水系统中的相关子系统和组件,过程以及相互作用。评估排除子系统或忽略交互的允许性。关于城市水系统的集成建模,在系统复杂性,异构规模和界面问题方面,是一项艰巨的任务。系统的现状以集成建模的初步方法为特征。结论是,创建一个实体模型并将其应用于城市综合水建模的范围似乎没有希望。相反,开发适当,有效的IT框架被视为集成建模的关键问题。作为欧洲研究项目HarmonlT和美国EPA多媒体集成建模系统项目MIMS的目标,提出了协调接口以促进现有模型的链接。

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