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Zone-Integrated Double-Constraint Methodology for Calibration of Hydraulic Conductivities in Grid Cell Clusters of Groundwater Flow Models

机译:区域积分双约束方法用于地下水流模型网格单元中水力传导率的标定

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摘要

This paper deals with the double-constraint methodology for calibration of steady-state groundwater flow models. The methodology is based on updating the hydraulic conductivity of the model domain by comparing the results of two forward groundwater flow models: a model in which known fluxes are specified as boundary conditions and a model in which known heads are specified as boundary conditions. A new zone-integrated double-constraint approach is presented by partitioning the model domain in zones with presumed constant hydraulic conductivity (soft data), and the double-constraint methodology is reformulated accordingly. The feasibility of the method is illustrated by a practical case study involving a numerical steady-state groundwater flow model with about 3 million grid blocks, subdivided into four zones corresponding to the major hydrogeological formations. The results of the zone-integrated double-constraint method for estimating the horizontal and vertical hydraulic conductivities of the zones compare favourably with a classical model calibration based on minimisation of the differences between calculated and measured heads, while the double-constraint method proves to be more robust and computationally less cumbersome.
机译:本文讨论了用于稳态地下水流模型校准的双重约束方法。该方法基于比较两个正向地下水流模型的结果来更新模型域的水力传导率:将已知流量指定为边界条件的模型,以及将已知压头指定为边界条件的模型。通过将模型域划分为假定的恒定水力传导率(软数据),提出了一种新的区域集成双约束方法,并相应地重新构造了双约束方法。通过一个实际案例研究,说明了该方法的可行性,该案例研究包括一个具有约300万个网格块的稳态地下水数值流模型,细分为对应于主要水文地质构造的四个区域。估计区域水平和垂直水力传导率的区域集成双约束方法的结果与基于最小化计算压头和实测压头之间差异的经典模型标定相比具有优势,而双约束方法证明是更加健壮,计算量更少。

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