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Modeling Groundwater Flow in Heterogeneous Porous Media with YAGMod

机译:用YAGMod模拟非均质多孔介质中的地下水流。

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摘要

Modeling flow and transport in porous media requires the management of complexities related both to physical processes and to subsurface heterogeneity. A thorough approach needs a great number of spatially-distributed phenomenological parameters, which are seldom measured in the field. For instance, modeling a phreatic aquifer under high water extraction rates is very challenging, because it requires the simulation of variably-saturated flow. 3D steady groundwater flow is modeled with YAGMod (yet another groundwater flow model), a model based on a finite-difference conservative scheme and implemented in a computer code developed in Fortran90. YAGMod simulates also the presence of partially-saturated or dry cells. The proposed algorithm and other alternative methods developed to manage dry cells in the case of depleted aquifers are analyzed and compared to a simple test. Different approaches yield different solutions, among which, it is not possible to select the best one on the basis of physical arguments. A possible advantage of YAGMod is that no additional non-physical parameter is needed to overcome the numerical difficulties arising to handle drained cells. YAGMod also includes a module that allows one to identify the conductivity field for a phreatic aquifer by solving an inverse problem with the comparison model method.
机译:对多孔介质中的流动和传输进行建模需要管理与物理过程和地下异质性相关的复杂性。彻底的方法需要大量在空间上分布的现象学参数,这些参数在现场很少测量。例如,在高水提取率下对潜水含水层进行建模非常具有挑战性,因为它需要模拟可变饱和流量。 3D稳定地下水流使用YAGMod(还有另一个地下水流模型)建模,该模型基于有限差分保守方案,并在Fortran90中开发的计算机代码中实现。 YAGMod还可模拟部分饱和或干电池的存在。分析了拟议的算法和开发来管理含水层枯竭情况下干细胞的其他替代方法,并将其与简单测试进行了比较。不同的方法产生不同的解决方案,其中不可能根据物理论据选择最佳解决方案。 YAGMod的可能优点是不需要其他非物理参数来克服处理排水单元所产生的数值困难。 YAGMod还包括一个模块,该模块允许通过使用比较模型方法解决反问题来识别潜水含水层的电导率场。

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