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Using system dynamics to model water-reallocation

机译:使用系统动力学建模水的重新分配

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Improving the efficiency of water allocation has long been recognised as a key problem for the water resources management decision-makers. However, assessing the efficacy of management decision is difficult due to the complexity and interconnectivity of water resource systems. For this reason, it is vital that robust modelling approaches are employed to deal with the feedback loops inherent in the water resource systems. Whilst many studies have applied modelling to various aspects of water resource management, little attention has been given to innovations in modelling approaches to deal with the modelling challenges associated with improving decision-making. The aim of this study is to apply a System Dynamics modelling approach to improve the efficiency of water allocation incorporating a myriad of irrigation system constraints. The system dynamic approach allows the different system components to be organised as a collection of discrete objects that incorporate data, structure and function to generate complex system behaviour. Through the application of a system dynamic approach, a robust model (named the Economical Reallocating Water Model (ERWM)) was developed which was used to examine the options of re-allocating water resources that minimize the water cost all over an irrigated agricultural area. The ERWM incorporated a wide range of complexities likely to be encountered in water resource management: surface and ground water sources, water trading between sources, system constraint such as maximum ground water pumping, rates, maximum possible trading volumes and differential water resource prices. Two hypothetical systems have been presented here as an example. The results show that the System Dynamics approach has a significant advantages in estimating and assessing the outcomes of alternative water management strategies through time and space.
机译:长期以来,提高水分配效率一直被认为是水资源管理决策者的关键问题。但是,由于水资源系统的复杂性和相互联系性,评估管理决策的有效性非常困难。因此,至关重要的是采用可靠的建模方法来处理水资源系统中固有的反馈回路。尽管许多研究已将建模应用于水资源管理的各个方面,但很少关注建模方法的创新以应对与改善决策相关的建模挑战。这项研究的目的是应用系统动力学建模方法,以结合无数的灌溉系统约束来提高水分配效率。系统动态方法允许将不同的系统组件组织为离散对象的集合,这些对象合并了数据,结构和功能以生成复杂的系统行为。通过应用系统动态方法,开发了一个健壮的模型(称为经济再分配水模型(ERWM)),该模型用于研究在农业灌溉地区使水资源成本最小化的再分配水资源的方案。 ERWM包含了水资源管理中可能遇到的一系列复杂问题:地表水和地下水源,水源之间的水交易,系统约束(例如最大的地下水泵送,费率,最大可能的交易量和差异的水资源价格)。这里以两个假设系统为例。结果表明,系统动力学方法在通过时空评估和评估替代水管理策略的结果方面具有显着优势。

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