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用于饱和岩溶地区水流与输运的格子玻尔兹曼模型。

Lattice Boltzmann models for flow and transport in saturated karst.

作者信息

Anwar Shadab, Sukop Michael C

机构信息

Department of Earth Sciences, Florida International University, University Park, Miami, FL 33199, USA.

出版信息

Ground Water. 2009 May-Jun;47(3):401-13. doi: 10.1111/j.1745-6584.2008.00514.x. Epub 2008 Nov 12.

Abstract

Flow and transport simulation in karst aquifers remains a significant challenge for the ground water modeling community. Darcy's law-based models cannot simulate the inertial flows characteristic of many karst aquifers. Eddies in these flows can strongly affect solute transport. The simple two-region conduit/matrix paradigm is inadequate for many purposes because it considers only a capacitance rather than a physical domain. Relatively new lattice Boltzmann methods (LBMs) are capable of solving inertial flows and associated solute transport in geometrically complex domains involving karst conduits and heterogeneous matrix rock. LBMs for flow and transport in heterogeneous porous media, which are needed to make the models applicable to large-scale problems, are still under development. Here we explore aspects of these future LBMs, present simple examples illustrating some of the processes that can be simulated, and compare the results with available analytical solutions. Simulations are contrived to mimic simple capacitance-based two-region models involving conduit (mobile) and matrix (immobile) regions and are compared against the analytical solution. There is a high correlation between LBM simulations and the analytical solution for two different mobile region fractions. In more realistic conduit/matrix simulation, the breakthrough curve showed classic features and the two-region model fit slightly better than the advection-dispersion equation (ADE). An LBM-based anisotropic dispersion solver is applied to simulate breakthrough curves from a heterogeneous porous medium, which fit the ADE solution. Finally, breakthrough from a karst-like system consisting of a conduit with inertial regime flow in a heterogeneous aquifer is compared with the advection-dispersion and two-region analytical solutions.

摘要

岩溶泉含水层中的水流与输运模拟,对地下水模拟界而言仍是一项重大挑战。基于达西定律的模型无法模拟许多岩溶泉含水层特有的惯性水流。这些水流中的漩涡会强烈影响溶质运移。简单的双区域管道/基质范式在许多情况下并不适用,因为它只考虑了一种容量,而非物理域。相对较新的格子玻尔兹曼方法(LBM)能够求解涉及岩溶管道和非均质基质岩的几何复杂域中的惯性水流及相关溶质运移。为使模型适用于大规模问题而开发的非均质多孔介质水流与输运的LBM仍在发展中。在此,我们探讨这些未来LBM的一些方面,给出简单示例说明一些可模拟的过程,并将结果与现有的解析解进行比较。模拟旨在模仿基于简单容量的双区域模型,该模型涉及管道(可动)和基质(不可动)区域,并与解析解进行比较。对于两种不同的可动区域分数,LBM模拟与解析解之间存在高度相关性。在更实际的管道/基质模拟中,突破曲线呈现出经典特征,双区域模型的拟合略优于平流-弥散方程(ADE)。应用基于LBM的各向异性弥散求解器来模拟非均质多孔介质中的突破曲线,其与ADE解相拟合。最后,将由非均质含水层中具有惯性流态的管道组成的类岩溶系统的突破情况与平流-弥散和双区域解析解进行比较。

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