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A practitioner's perspective on the uses and future developments for wastewater treatment modelling

机译:从业者对废水处理模型的用途和未来发展的看法

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The modern age of wastewater treatment modelling began with publication of the International Water Association (IWA) Activated Sludge Model (ASM) No.1 and has advanced significantly since. Models are schematic representations of systems that are useful for analysis to support decision-making. The most appropriate model for a particular application often incorporates only those components essential for the particular analyses to be performed (i.e. the simplest model possible). Characteristics of effective models are presented, along with how wastewater modelling is integrated into the wastewater project life cycle. The desirable characteristics of wastewater treatment modelling platforms are then reviewed. Current developments of note in wastewater treatment modelling practice include estimates of greenhouse gas emissions, incorporating uncertainty into wastewater modelling and design practice, more fundamental modelling of process chemistry, and improved understanding of the degradability of wastewater constituents in different environments. Areas requiring greater emphasis include increased use of metabolic modelling, characterisation of the hydrodynamics of suspended and biofilm biological treatment processes, and the integration of biofilm and suspended growth process modelling. Wastewater treatment models must also interface with water and wastewater management software packages. While wastewater treatment modelling will continue to advance and make important contributions to practice, it must be remembered that these are complex systems which exhibit counter-intuitive behaviour (results differ from initial expectations) and multiple dynamic steady-states which can abruptly transition from one to another.
机译:废水处理模型的现代时代始于国际水协会(IWA)活性污泥模型(ASM)No.1的发布,此后有了长足的发展。模型是系统的示意图,可用于分析以支持决策。对于特定应用最合适的模型通常仅包含那些对要执行的特定分析必不可少的组件(即可能的最简单模型)。介绍了有效模型的特征,以及如何将废水模型集成到废水项目生命周期中。然后回顾了废水处理建模平台的理想特性。废水处理建模实践中当前值得注意的发展包括估算温室气体排放,将不确定性纳入废水建模和设计实践中,更基本的过程化学建模以及对不同环境中废水成分可降解性的更好理解。需要更多强调的领域包括新陈代谢建模的使用增加,悬浮和生物膜生物处理过程的水动力学特性表征以及生物膜和悬浮生长过程建模的集成。废水处理模型还必须与水和废水管理软件包配合使用。尽管废水处理模型将继续发展并为实践做出重要贡献,但必须记住,这些系统是复杂的系统,具有违反直觉的行为(结果与最初的预期有所不同),并且具有多个动态稳态,这些稳态可能突然从一个过渡到另一个另一个。

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