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A Bayesian Assessment of an Approximate Model for Unconfined Water Flow in Sloping Layered Porous Media

机译:倾斜层状多孔介质中无约束水流近似模型的贝叶斯评估

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摘要

The prediction of water table height in unconfined layered porous media is a difficult modelling problem that typically requires numerical simulation. This paper proposes an analytical model to approximate the exact solution based on a steady-state Dupuit–Forchheimer analysis. The key contribution in relation to a similar model in the literature relies in the ability of the proposed model to consider more than two layers with different thicknesses and slopes, so that the existing model becomes a special case of the proposed model herein. In addition, a model assessment methodology based on the Bayesian inverse problem is proposed to efficiently identify the values of the physical parameters for which the proposed model is accurate when compared against a reference model given by MODFLOW-NWT, the open-source finite-difference code by the U.S. Geological Survey. Based on numerical results for a representative case study, the ratio of vertical recharge rate to hydraulic conductivity emerges as a key parameter in terms of model accuracy so that, when appropriately bounded, both the proposed model and MODFLOW-NWT provide almost identical results.
机译:无约束层状多孔介质中地下水位高度的预测是一个困难的建模问题,通常需要进行数值模拟。本文提出了一种基于稳态Dupuit-Forchheimer分析的近似模型,可以精确求解该解决方案。文献中与相似模型相关的关键贡献在于所提出的模型考虑具有不同厚度和斜率的两层以上的能力,因此现有模型成为本文所提出模型的特例。此外,提出了一种基于贝叶斯逆问题的模型评估方法,以与MODFLOW-NWT给出的参考模型(开源有限差分)相比,有效地识别所提出模型准确的物理参数值。代码由美国地质调查局提供。基于代表性案例研究的数值结果,垂直补给率与水力传导率之比成为模型精度方面的关键参数,因此,在适当限制的情况下,建议的模型和MODFLOW-NWT都能提供几乎相同的结果。

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