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首页> 外文期刊>Advances in Water Resources >Constraining Water Table Depth Simulations In A Land Surface Model Using Estimated Baseflow
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Constraining Water Table Depth Simulations In A Land Surface Model Using Estimated Baseflow

机译:使用估计基流在陆地表面模型中约束地下水位深度模拟

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摘要

Several recent studies have shown the significance of representing groundwater in land surface hydro-logic simulations. However, optimal methods for model parameter calibration in order to realistically simulate baseflow and groundwater depth have received little attention. Most studies still use globally constant groundwater parameters due to the lack of available datasets for calibration. Moreover, when models are calibrated, various parameter combinations are found to exhibit equifinality in simulated total runoff due to model parameter interactions. In this study, a simple lumped groundwater model is incorporated into the Community Land Model (CLM), in which the water table is interactively coupled to soil moisture through the groundwater recharge fluxes. The coupled model (CLMGW) is successfully validated in Illinois using a 22-year (1984-2005) monthly observational dataset. Baseflow estimates from the digital recursive filter technique are used to calibrate the CLMGW parameters. The advantage obtained from incorporating basefiow calibration in addition to traditional calibration based on measured streamflow alone is demonstrated by a Monte Carlo-type simulation analysis. Using the optimal parameter sets identified from basefiow calibration, flow partitioning and water table depth simulations using CLMGW are improved, and the equifinality problem is alleviated. For other regions that lack observations of water table depth, the baseflow calibration approach can be used to enhance parameter estimation and constrain water table depth simulations.
机译:最近的一些研究表明,在陆地表面水文模拟中代表地下水很重要。然而,用于逼真的模拟基流和地下水深度的模型参数校准的最佳方法鲜为人知。由于缺乏可用的校准数据集,大多数研究仍使用全局恒定的地下水参数。此外,当模型被校准时,由于模型参数的相互作用,各种参数组合在模拟的总径流中表现出均等性。在这项研究中,将简单的集总地下水模型合并到社区土地模型(CLM)中,其中地下水位通过地下水补给通量与土壤水分互动耦合。耦合模型(CLMGW)已使用22年(1984-2005年)每月观测数据集在伊利诺伊州成功验证。来自数字递归滤波器技术的基本流估计值用于校准CLMGW参数。蒙特卡洛型模拟分析证明了除了仅基于测量流量的传统校准之外,还结合了基本流量校准所获得的优势。使用从基流校准中识别出的最佳参数集,改进了使用CLMGW的流量分配和地下水位模拟,并减轻了均等性问题。对于其他缺乏地下水位深度观测的区域,可以使用基流校准方法来增强参数估计并限制地下水位深度模拟。

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