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首页> 外文期刊>Vadose zone journal VZJ >Updating the Coupling Algorithm between HYDRUS and MODFLOW in the HYDRUS Package for MODFLOW
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Updating the Coupling Algorithm between HYDRUS and MODFLOW in the HYDRUS Package for MODFLOW

机译:更新湿润封装中的Hydrus和Modflow的耦合算法进行Modflow

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摘要

The HYDRUS-based flow package for MODFLOW (the HPM or the HYDRUS package) is an existing unsaturated zone flow package for MODFLOW. In MODFLOW with the HPM, the groundwater modeling domain is discretized into regular grids that can be combined into multiple zones based on similarities in soil hydrology, topographical characteristics, and the depth to the groundwater. Each of these zones is assigned one unsaturated soil profile (the HPM profile). In this model, after every MODFLOW time step, the flux at the bottom of the HPM profile is given as an input recharge flux to MODFLOW. MODFLOW simulates groundwater flow, and the water table depth at the end of the MODFLOW time step is assigned as the bottom boundary condition in the HPM profile. The current coupling algorithm assumes that the groundwater table in the HPM profile remains constant throughout the entire MODFLOW time step. This results in unrealistic sudden inflow and/or outflow fluxes at the bottom of the HPM profile after every time step. The objective of this study was to develop a methodology to eliminate the error in the determination of the recharge flux at the bottom of the HPM profile. This was achieved by updating or modifying the pressure head profile in the HPM profile after every MODFLOW time step. The effectiveness and the applicability of the new coupling algorithm were evaluated using different case studies. The new coupling algorithm is effective in eliminating unrealistic sudden variations in the bottom flux in the HPM profiles.
机译:用于Modflow的氢气基流量包(HPM或HOTURUS包)是用于MODFLOW的现有不饱和区流量包。在使用HPM的Modflow中,地下水建模域被离散化为常规网格,该网格可以基于土壤水文,地形特性和地下水的深度和地下水的深度组合成多个区域。这些区域中的每一个被分配一个不饱和土曲线(HPM型材)。在该模型中,在每个模流时间步骤之后,将HPM配置文件底部的通量作为输入充值通量给予ModFlow。 Modflow模拟地下水流,模型流程时间步骤结束时的水位深度被分配为HPM配置文件中的底部边界条件。当前耦合算法假定HPM配置文件中的地下水表在整个模型流时间步骤中保持恒定。每次步骤后,这导致HPM配置文件底部的不切实际的突然流入和/或流出通量。本研究的目的是开发一种方法,以消除误差在HPM概况底部的再充电通量的确定。这是通过在每个模型流程时间步骤之后更新或修改HPM配置文件中的压力头轮廓来实现的。使用不同案例研究评估了新偶联算法的有效性和适用性。新的耦合算法有效地消除了HPM配置文件中底部通量的不切实际的突然变化。

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