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Chapter 17 Urban Water Management Under Uncertainty: A System Dynamic Approach

机译:第十七章不确定性下的城市水管理:系统动力学方法

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Urban water management (UWM) is a complex task with a number of constraints especially in developing cities. Rapid population growth, inadequate water infrastructure, and inefficiency in water management policies have led to increased pressure on the city's water supply and drainage systems. These challenges, however, remain uncertain in terms of both temporal scale and magnitude of change, such as climate change and sea level rise. A city needs an appropriate framework to support not only short-term adaptation activities but also long-term strategies to enhance its resilience to these uncertainties. Therefore, system dynamics-methodologies to frame, understand, and discuss complex issues and problems-is a suitable approach for such complex UWM issues. The purpose of this chapter is to share our experiences in applying a system dynamics approach in Can Tho City, Vietnam. The study went through several steps that involved identifying key stakeholders and tools to support decision making, recognizing exogenous uncertainties and potential measures with their effectiveness indicators, building models to support decision making in present and future scenarios related to the UWM, and engaging stakeholders during the study approach to ensure the complex model results were well taken up and used for their future decisions. Throughout the case study, the system dynamics approach shows its capacity in supporting the city's policy makers and managers in dealing with such interdisciplinary and complex issues.
机译:城市水管理(UWM)是一项复杂的任务,有很多限制,特别是在发展中城市。人口的快速增长,供水基础设施不足以及水资源管理政策效率低下,给城市的供水和排水系统带来了越来越大的压力。但是,就时间尺度和变化幅度(例如气候变化和海平面上升)而言,这些挑战仍然不确定。一个城市需要一个适当的框架来不仅支持短期适应活动,还需要长期战略,以增强其对这些不确定性的适应力。因此,用于构造,理解和讨论复杂问题的系统动力学方法是解决此类复杂UWM问题的合适方法。本章的目的是分享我们在越南芹T市应用系统动力学方法的经验。该研究经历了几个步骤,其中包括确定关键的利益相关者和支持决策的工具,识别外在的不确定性和具有有效性指标的潜在措施,建立模型以支持与UWM相关的当前和未来情景中的决策,以及在研究方法以确保复杂模型的结果被正确吸收并用于将来的决策。在整个案例研究中,系统动力学方法显示了其在支持城市决策者和管理者处理此类跨学科和复杂问题方面的能力。

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