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Technical Note: Reducing the spin-up time of integrated surface water-groundwater models

机译:技术说明:减少集成的地表水-地下水模型的加速时间

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One of the main challenges in the application of coupled or integrated hydrologic models is specifying a catchment's initial conditions in terms of soil moisture and depth-to-water table (DTWT) distributions. One approach to reducing uncertainty in model initialization is to run the model recursively using either a single year or multiple years of forcing data until the system equilibrates with respect to state and diagnostic variables. However, such "spin-up" approaches often require many years of simulations, making them computationally intensive. In this study, a new hybrid approach was developed to reduce the computational burden of the spin-up procedure by using a combination of model simulations and an empirical DTWT function. The methodology is examined across two distinct catchments located in a temperate region of Denmark and a semi-arid region of Australia. Our results illustrate that the hybrid approach reduced the spin-up period required for an integrated groundwater-surface water-land surface model (ParFlow.CLM) by up to 50%. To generalize results to different climate and catchment conditions, we outline a methodology that is applicable to other coupled or integrated modeling frameworks when initialization from an equilibrium state is required.
机译:应用耦合或综合水文模型的主要挑战之一是根据土壤湿度和水深(DTWT)分布来指定流域的初始条件。减少模型初始化中不确定性的一种方法是使用一年或多年的强制数据来递归运行模型,直到系统在状态和诊断变量方面达到平衡为止。但是,这种“自旋”方法通常需要多年的仿真,从而使它们的计算量很大。在这项研究中,通过结合模型仿真和经验DTWT函数,开发了一种新的混合方法来减少旋转程序的计算负担。在位于丹麦温带地区和澳大利亚半干旱地区的两个不同流域对方法进行了研究。我们的结果表明,混合方法将集成地下水-地表水-土地表面模型(ParFlow.CLM)所需的加速时间缩短了多达50%。为了将结果概括为不同的气候和集水条件,当需要从平衡状态进行初始化时,我们概述了适用于其他耦合或集成建模框架的方法。

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