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Development and application of a modeling approach for surface water and groundwater interaction

机译:地表水与地下水相互作用的建模方法的开发与应用

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摘要

Investigation of the interaction of surface water (SW) and groundwater (GW) is critical in order to determine the effects of best management practices (BMPs) on the entire system of water resources. The objective of this research was to develop a modeling system for considering SW-GW interactions and to demonstrate the applicability of the developed system. A linked modeling approach was selected to consider SW-GW interaction. The dual-simulation scheme was developed to consider different time scales between a newly developed surface model: Dynamic Agricultural Non-point Source Assessment Tool (DANSAT), and existing groundwater models; a three-dimensional finite-difference groundwater flow model (MODFLOW) and a modular three-dimensional transport model (MT3D). A distributed and physically based DANSAT predicts the movement of water and pesticides in runoff and in leachate at a watershed scale. MODFLOW and MT3D simulate groundwater and pesticide movement in the saturated zone. Only the hydrology component of the linked system was evaluated on the QN2 subwatershed in the Nomini Creek watershed located in the Coastal Plain of Virginia mainly due to lack of observed data for MT3D calibration. The same spatial scale was used for both surface and groundwater models while different time scales were used because surface runoff occurs more quickly than groundwater flow. DANSAT and MODFLOW were separately calibrated using the integrated GW approach which uses own lumped baseflow components in DANSAT, and using the steady-state mode in MODFLOW, respectively. Then the linked system was applied to QN2 based on the parameters selected for DANSAT and MODFLOW to simulate time-dependent interactions on the entire system. The linked approach was better than the integrated approach for predicting the temporal trends of monthly runoff by improving the monthly Nash-Sutcliffe efficiency index from 0.53 to 0.60. The proposed linked approach will be useful for evaluating the impacts of agricultural BMPs on the entire SW-GW system by providing spatial distribution and temporal changes in groundwater table elevation and enhancing the reliability of calibrated parameter sets.
机译:为了确定最佳管理实践(BMP)对整个水资源系统的影响,调查地表水(SW)和地下水(GW)的相互作用至关重要。这项研究的目的是开发一种考虑SW-GW相互作用的建模系统,并证明所开发系统的适用性。选择了一种链接建模方法来考虑SW-GW的相互作用。开发双模拟方案的目的是考虑新开发的地面模型:动态农业面源评估工具(DANSAT)和现有的地下水模型之间的不同时标。一个三维有限差分地下水流模型(MODFLOW)和一个模块化三维运输模型(MT3D)。基于物理的分布式DANSAT可以预测流域范围内径流和渗滤液中水和农药的移动。 MODFLOW和MT3D模拟了饱和区内的地下水和农药移动。仅由于缺乏用于MT3D校准的观测数据,才对位于弗吉尼亚州沿海平原的Nomini Creek流域的QN2子流域评估了链接系统的水文部分。地表模型和地下水模型都使用相同的空间尺度,而地表模型和地下水模型则使用不同的时间尺度,因为地表径流比地下水流更快地发生。 DANSAT和MODFLOW使用集成的GW方法分别校准,该方法在DANSAT中使用自己的集总基流分量,并分别在MODFLOW中使用稳态模式。然后根据为DANSAT和MODFLOW选择的参数将链接的系统应用于QN2,以模拟整个系统上与时间有关的交互。通过将Nash-Sutcliffe每月效率指数从0.53提高到0.60,链接方法比集成方法更好地预测了径流的时间趋势。通过提供地下水位高程的空间分布和时间变化并增强标定参数集的可靠性,所提出的链接方法将有助于评估农业BMP对整个SW-GW系统的影响。

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