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- W2022842445 abstract "A boundary element model for flows in regional aquifers is developed and reported herein. The model written in FORTRAN, deals with steady-state flows in confined or unconfined aquifers, with complex boundary geometry, inhomogeneity and the presence of a system of multiple wells. The model also treats an extended provision of the boundary element method to deal with non-linearities encountered due to unconfined nature of the aquifer. The aquifer inhomogeneity and the unconfined state are treated employing a hybrid approach combining the boundary elements and the domain cells. An iterative procedure updating the equivalent linearised equations is adopted to treat non-linearity. For describing the aquifer hydraulics, the boundary element method (BEM) is used. For the aquifer management decisions, a FORTRAN coded program based on linear programming (LP) theory is used. These two powerful techniques are coupled to form an integrated model. This enables the automatic updating of LP formulation and its solution iteratively in the case of nonlinear problems. To validate and demonstrate the potential of the resulting model, two different situations involving a heterogeneous confined aquifer and an unconfined aquifer are considered. The results obtained are compared with those of other numerical models. The comparisons indicate the power of BEM coupled LP models in dealing efficiently with distributed parameter groundwater management problems with relatively less computational effort." @default.
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- W2022842445 date "1992-01-01" @default.
- W2022842445 modified "2023-09-25" @default.
- W2022842445 title "Extended boundary element method for inhomogeneous and unconfined aquifers" @default.
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- W2022842445 doi "https://doi.org/10.1016/0955-7997(92)90008-u" @default.
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