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首页> 外文期刊>The Science of the Total Environment >Measuring adaptive capacity of urban wastewater infrastructure - Change impact and change propagation
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Measuring adaptive capacity of urban wastewater infrastructure - Change impact and change propagation

机译:衡量城市废水基础设施的适应能力-变化影响和变化传播

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摘要

The ability of urban wastewater systems to adapt and transform as a response to change is an integral part of sustainable development. This requires technology and infrastructure that can be adapted to new operational challenges. In this study the adaptive capacity of urban wastewater systems is evaluated by assessing the interdependencies between system components. In interdependent and therefore tightly coupled systems, changes to one systems component will require alteration elsewhere in the system, therefore impairing the capacity of these systems to be changed. The aim of this paper is to develop a methodology to evaluate the adaptive capacity of urban wastewater systems by assessing how change drivers and innovation affect existing wastewater technology and infrastructure. The methodology comprises 7 steps and applies a change impact table and a design structure matrix that are completed by experts during workshops. Change impact tables quantify where change drivers, such as energy neutrality and resource recovery, require innovation in a system. The design structure matrix is a tool to quantify "emerging changes" that are a result of the innovation. The method is applied for the change driver of energy neutrality and shown for two innovations: a decentralised upflow anaerobic sludge blanket reactor followed by an anammox process and a conventional activated sludge treatment with enhanced chemical precipitation and high temperature-high pressure hydrolysis. The results show that the energy neutrality of wastewater systems can be address by either innovation in the decentralised or centralised treatment The quantification of the emerging changes for both innovations indicates that the decentralised treatment is more disruptive, or in other words, the system needs to undergo more adaptation. It is concluded that the change impact and change propagation method can be used to characterise and quantify the technological or in-frastructural transformations. In addition, it provides insight into the stakeholders affected by change.
机译:城市废水系统适应和转化以应对变化的能力是可持续发展的组成部分。这就需要可以适应新的运营挑战的技术和基础架构。在这项研究中,通过评估系统组件之间的相互依赖性来评估城市污水系统的适应能力。在相互依存且因此紧密耦合的系统中,对一个系统组件的更改将需要在系统中的其他位置进行更改,因此会削弱这些系统的更改能力。本文的目的是通过评估变化驱动因素和创新如何影响现有废水技术和基础设施,开发一种方法来评估城市废水系统的适应能力。该方法包括7个步骤,并应用变更影响表和设计结构矩阵,这些结论由专家在研讨会上完成。变更影响表量化了变更驱动因素(例如能源中立性和资源回收)在系统中需要创新的地方。设计结构矩阵是量化创新成果的“新兴变化”的工具。该方法适用于能源中性的变化驱动因素,并显示出两项创新:分散式上流厌氧污泥毯式反应器,然后进行厌氧氨氧化工艺,以及常规的活性污泥处理,具有增强的化学沉淀和高温高压水解作用。结果表明,可以通过分散或集中处理中的创新来解决废水系统的能源中立问题。两种创新的新兴变化的量化表明,分散式处理更具破坏性,或者换句话说,系统需要经历更多的适应性。结论是,变化影响和变化传播方法可用于表征和量化技术或基础设施转换。此外,它还可以洞察受变更影响的利益相关者。

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