Mandel's problem as a benchmark for two-dimensional nonlinear poroelasticity

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  • Eindhoven University of Technology (TU/e)
  • Université Claude Bernard Lyon 1
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OriginalspracheEnglisch
Seiten (von - bis)4267-4293
Seitenumfang27
FachzeitschriftApplicable analysis
Jahrgang101
Ausgabenummer12
PublikationsstatusVeröffentlicht - 27 Juni 2022

Abstract

In this paper, we consider Mandel's problem in the context of nonlinear single-phase poroelasticity, where it is assumed that the fluid is sightly compressible and porosity and permeability are given functions of the volume strain. In the first part of the paper we prove well-posedness of the time-discrete incremental problem by recasting the equations in an abstract form involving a pseudo-monotone operator. Further, we show existence of a Lyapunov functional yielding a global time discrete solution. In the second part, we investigate numerically the behavior of the poroelastic structure. In particular, we verify the assumptions leading to Mandel's solution. We also demonstrate some consequences of the proposed nonlinearities.

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Mandel's problem as a benchmark for two-dimensional nonlinear poroelasticity. / van Duijn, C. J.; Mikelić, A.; Wick, T.
in: Applicable analysis, Jahrgang 101, Nr. 12, 27.06.2022, S. 4267-4293 .

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

van Duijn CJ, Mikelić A, Wick T. Mandel's problem as a benchmark for two-dimensional nonlinear poroelasticity. Applicable analysis. 2022 Jun 27;101(12):4267-4293 . doi: 10.1080/00036811.2022.2091992
van Duijn, C. J. ; Mikelić, A. ; Wick, T. / Mandel's problem as a benchmark for two-dimensional nonlinear poroelasticity. in: Applicable analysis. 2022 ; Jahrgang 101, Nr. 12. S. 4267-4293 .
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N1 - Funding Information: A. M. was partially supported by Darcy Center of Eindhoven University of Technology and Utrecht University, the Netherlands, by the project UPGEO 〈ANR-19-CU05-032 〉 of the French National Research Agency (ANR) and by the LABEX MILYON (ANR-10-LABX-0070) of Université de Lyon, within the program ‘Investissements d'Avenir’ (ANR-11-IDEX-0007) operated by the French National Research Agency (ANR). The author deceased in Lyon on 28/11/2020.

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