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Review of the algebraic linear methods and parallel implementation in numerical simulation of groundwater flow

Tang-pei CHENG1,2Xing-wei LIU3Jing-Li SHAO3( )Ya-li CUI3
Institute of Applied Physics and Computational Mathematics, Beijing 100088, China
CAEP Software Center for High Performance Numerical Simulation, Beijing 100088, China
School of Water Resources and Environmental Science, China University of Geosciences (Beijing), Beijing 100083, China
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Abstract

The desire to increase spatial and temporal resolution in modeling groundwater system has led to the requirement for intensive computational ability and large memory space. In the course of satisfying such requirement, parallel computing has played a core role over the past several decades. This paper reviews the parallel algebraic linear solution methods and the parallel implementation technologies for groundwater simulation. This work is carried out to provide guidance to enable modelers of groundwater systems to make sensible choices when developing solution methods based upon the current state of knowledge in parallel computing.

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Journal of Groundwater Science and Engineering
Pages 12-17

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Cite this article:
CHENG T-p, LIU X-w, SHAO J-L, et al. Review of the algebraic linear methods and parallel implementation in numerical simulation of groundwater flow. Journal of Groundwater Science and Engineering, 2016, 4(1): 12-17. https://doi.org/10.26599/JGSE.2016.9280002

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Published: 28 March 2016
© 2016 Journal of Groundwater Science and Engineering Editorial Office