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Linking groundwater simulation and reservoir system analysis models: The case for California's Central Valley

机译:将地下水模拟与水库系统分析模型联系起来:以加利福尼亚中央谷地为例

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摘要

Groundwater is an important resource. In many developed basins it meets part or all of the water demands. In addition, the management of groundwater resources directly impacts stream flows through stream-aquifer interactions. Yet many reservoir system analysis models that are used for the management of surface water resources either include a simplified representation of the groundwater flow dynamics or rely on surrogate models (linear response functions, artificial neural networks, etc.) which are trained using more complex groundwater models. These approaches may introduce restrictive, sometimes inaccurate, representation of the groundwater flow dynamics and additional modeling steps. In this study a reservoir system analysis model that utilizes an LP solver is linked directly to a non-linear, three-dimensional, finite element groundwater model. The linked model is a general-purpose model and can be applied to any basin. Some of the features of the linked model are showcased by an application to California's Central Valley. (C) 2015 Elsevier Ltd. All rights reserved.
机译:地下水是重要的资源。在许多发达流域,它可以满足部分或全部用水需求。另外,地下水资源的管理通过水流-含水层相互作用直接影响水流。然而,许多用于地表水资源管理的储层系统分析模型要么简化了地下水流动力学的描述,要么依赖于替代模型(线性响应函数,人工神经网络等),这些模型使用更复杂的地下水进行训练。楷模。这些方法可能会引入限制性的(有时是不准确的)地下水流动力学表示和其他建模步骤。在本研究中,利用LP解算器的储层系统分析模型直接链接到非线性的三维有限元地下水模型。链接模型是通用模型,可以应用于任何盆地。链接模型的某些功能在加利福尼亚中央谷地的一个应用程序中得到了展示。 (C)2015 Elsevier Ltd.保留所有权利。

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