Block preconditioners for mixed-dimensional discretization of flow in fractured porous media

Author:

Budiša AnaORCID,Hu Xiaozhe

Abstract

AbstractIn this paper, we are interested in an efficient numerical method for the mixed-dimensional approach to modeling single-phase flow in fractured porous media. The model introduces fractures and their intersections as lower-dimensional structures, and the mortar variable is used for flow coupling between the matrix and fractures. We consider a stable mixed finite element discretization of the problem, which results in a parameter-dependent linear system. For this, we develop block preconditioners based on the well-posedness of the discretization choice. The preconditioned iterative method demonstrates robustness with regard to discretization and physical parameters. The analytical results are verified on several examples of fracture network configurations, and notable results in reduction of number of iterations and computational time are obtained.

Funder

Norges Forskningsråd

National Science Foundation

Publisher

Springer Science and Business Media LLC

Subject

Computational Mathematics,Computational Theory and Mathematics,Computers in Earth Sciences,Computer Science Applications

Reference32 articles.

1. Adler, J.H., Gaspar, F.J., Hu, X., Rodrigo, C., Zikatanov, L.T.: Robust block preconditioners for biot’s model. In: Bjørstad, P.E., Brenner, S.C., Halpern, L., Kim, H.H., Kornhuber, R., Rahman, T., Widlund, O.B. (eds.) Domain Decomposition Methods in Science and Engineering XXIV, pp 3–16. Springer International Publishing, Cham (2018)

2. Adler, J.H., Gaspar, F.J., Hu, X., Ohm, P., Rodrigo, C., Zikatanov, L.T.: Robust preconditioners for a new stabilized discretization of the poroelastic equations. arXiv:1905.10353 [math.NA] (2019)

3. Adler, J.H., Hu, X., Zikatanov, L.T.: HAZMATH: a simple finite element, graph and solver library

4. Antonietti, P., De Ponti, J., Formaggia, L., Scotti, A.: Preconditioning techniques for the numerical solution of flow in fractured porous media. MOX-Report No 17/2019 (2019)

5. Arrarás, A., Gaspar, F.J., Portero, L., Rodrigo, C.: Monolithic mixed-dimensional multigrid methods for single-phase flow in fractured porous media. arXiv:1811.01264 [math.NA] (2018)

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