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首页> 外文期刊>Hydrology and Earth System Sciences >Accessible integration of agriculture, groundwater, and economic models using the Open Modeling Interface (OpenMI): Methodology and initial results
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Accessible integration of agriculture, groundwater, and economic models using the Open Modeling Interface (OpenMI): Methodology and initial results

机译:使用开放建模界面(OpenMI)进行的农业,地下水和经济模型的无障碍集成:方法和初步结果

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摘要

Policy for water resources impacts not only hydrological processes, but the closely intertwined economic and social processes dependent on them. Understanding these process interactions across domains is an important step in establishing effective and sustainable policy. Multidisciplinary integrated models can provide insight to inform this understanding, though the extent of software development necessary is often prohibitive, particularly for small teams of researchers. Thus there is a need for practical methods for building interdisciplinary integrated models that do not incur a substantial development effort. In this work we adopt the strategy of linking individual domain models together to build a multidisciplinary integrated model. The software development effort is minimized through the reuse of existing models and existing model-linking tools without requiring any changes to the model source codes, and linking these components through the use of the Open Modeling Interface (OpenMI). This was found to be an effective approach to building an agricultural-groundwater-economic integrated model for studying the effects of water policy in irrigated agricultural systems. The construction of the integrated model provided a means to evaluate the impacts of two alternative water-use policies aimed at reducing irrigated water use to sustainable levels in the semi-arid grasslands overlying the Ogallala Aquifer of the Central US. The results show how both the economic impact in terms of yield and revenue and the environmental impact in terms of groundwater level vary spatially throughout the study region for each policy. Accessible integration strategies are necessary if the practice of interdisciplinary integrated simulation is to become widely adopted.
机译:水资源政策不仅影响水文过程,而且影响依存于它们的紧密联系的经济和社会过程。了解跨领域的这些过程相互作用是建立有效且可持续的政策的重要一步。多学科集成模型可以提供洞察力,以帮助理解,尽管必要的软件开发范围常常令人望而却步,特别是对于小型研究人员团队而言。因此,需要用于构建跨学科集成模型的实用方法,而该方法不会产生实质性的开发工作。在这项工作中,我们采用将各个领域模型链接在一起的策略,以建立一个多学科的集成模型。通过重用现有模型和现有模型链接工具,无需对模型源代码进行任何更改,并通过使用开放建模接口(OpenMI)链接这些组件,可以最大程度地减少软件开发工作。人们发现这是建立农业-地下水-经济综合模型以研究灌溉农业系统中水政策影响的有效方法。集成模型的构建提供了一种评估两种替代用水政策的影响的方法,这些政策旨在将美国中部Ogallala含水层上的半干旱草原的灌溉水使用量减少到可持续水平。结果表明,每种政策在整个研究区域中,就产量和收入而言的经济影响和对地下水位方面的环境影响如何在空间上变化。如果要广泛采用跨学科集成模拟的实践,则必须使用可访问的集成策略。

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