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Calculating transport of water from a conduit to the porous matrix by boundary distributed source method

机译:通过边界分布源法计算水从导管到多孔基质的传输

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This study presents the development of a suitable numerical method for porous media flow with free and moving boundary (Stefan) problems arising in systems with wetted and unwetted regions of porous media. A non-singular version of the method of fundamental solutions (MFS), termed the boundary distributed source method (BDS), is applied. Darcy flow and homogenous isotropic porous media is assumed. The solution is represented in terms of the fundamental solution of the Laplace equation in two-dimensional Cartesian coordinates. The desingularisation is achieved through boundary distributed sources of the fundamental solution and indirect calculation of the derivatives of the fundamental solution. Respectively, the artificial boundary, characteristic for the classical, singular MFS is not present. The novel BDS is compared with the MFS and the analytical solutions for several numerical examples with excellent agreement. A sensitivity study of the solution, regarding the discretization and the free parameters is performed. The main contributions of the study are the application of the BDS to free and moving boundary problems and the comparison of BDS with MFS for these types of problems. The developed model can be applied to various geohydrological problems.
机译:这项研究提出了一种适用的数值方法的发展方法,该方法适用于在具有润湿和未润湿的多孔介质区域的系统中出现的具有自由边界和移动边界(Stefan)问题的多孔介质流动。应用了基础解决方案(MFS)的非奇异版本,称为边界分布式源方法(BDS)。假定达西流和均质各向同性多孔介质。用二维笛卡尔坐标系中拉普拉斯方程的基本解表示该解。通过基础解的边界分布源和基础解的导数的间接计算来实现去奇化。分别地,不存在典型的,单一的MFS的人工边界。将该新型BDS与MFS和几个数值示例的解析解进行了比较,并取得了很好的一致性。进行了关于离散化和自由参数的解决方案敏感性研究。这项研究的主要贡献是将BDS应用于自由边界和移动边界问题,以及将BDS与MFS进行比较以解决这些类型的问题。所开发的模型可以应用于各种地质水文问题。

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