Stable mixed finite elements for linear elasticity with thin inclusions

We consider mechanics of composite materials in which thin inclusions are modeled by lower-dimensional manifolds. By successively applying the dimensional reduction to junctions and intersections within the material, a geometry of hierarchically connected manifolds is formed which we refer to as mix...

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Vydáno v:Computational geosciences Ročník 25; číslo 2; s. 603 - 620
Hlavní autoři: Boon, W. M., Nordbotten, J. M.
Médium: Journal Article
Jazyk:angličtina
Vydáno: Cham Springer International Publishing 01.04.2021
Springer Nature B.V
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ISSN:1420-0597, 1573-1499, 1573-1499
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Abstract We consider mechanics of composite materials in which thin inclusions are modeled by lower-dimensional manifolds. By successively applying the dimensional reduction to junctions and intersections within the material, a geometry of hierarchically connected manifolds is formed which we refer to as mixed-dimensional. The governing equations with respect to linear elasticity are then defined on this mixed-dimensional geometry. The resulting system of partial differential equations is also referred to as mixed-dimensional, since functions defined on domains of multiple dimensionalities are considered in a fully coupled manner. With the use of a semi-discrete differential operator, we obtain the variational formulation of this system in terms of both displacements and stresses. The system is then analyzed and shown to be well-posed with respect to appropriately weighted norms. Numerical discretization schemes are proposed using well-known mixed finite elements in all dimensions. The schemes conserve linear momentum locally while relaxing the symmetry condition on the stress tensor. Stability and convergence are shown using a priori error estimates and confirmed numerically.
AbstractList We consider mechanics of composite materials in which thin inclusions are modeled by lower-dimensional manifolds. By successively applying the dimensional reduction to junctions and intersections within the material, a geometry of hierarchically connected manifolds is formed which we refer to as mixed-dimensional. The governing equations with respect to linear elasticity are then defined on this mixed-dimensional geometry. The resulting system of partial differential equations is also referred to as mixed-dimensional, since functions defined on domains of multiple dimensionalities are considered in a fully coupled manner. With the use of a semi-discrete differential operator, we obtain the variational formulation of this system in terms of both displacements and stresses. The system is then analyzed and shown to be well-posed with respect to appropriately weighted norms. Numerical discretization schemes are proposed using well-known mixed finite elements in all dimensions. The schemes conserve linear momentum locally while relaxing the symmetry condition on the stress tensor. Stability and convergence are shown using a priori error estimates and confirmed numerically.
Author Boon, W. M.
Nordbotten, J. M.
Author_xml – sequence: 1
  givenname: W. M.
  orcidid: 0000-0003-4080-2369
  surname: Boon
  fullname: Boon, W. M.
  email: wietse@kth.se
  organization: Institute for Modelling Hydraulic and Environmental Systems, University of Stuttgart, Department of Mathematics, KTH Royal Institute of Technology
– sequence: 2
  givenname: J. M.
  orcidid: 0000-0003-1455-5704
  surname: Nordbotten
  fullname: Nordbotten, J. M.
  organization: Department of Mathematics, University of Bergen
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crossref_primary_10_1515_jnma_2022_0038
crossref_primary_10_1007_s10915_023_02119_3
Cites_doi 10.1016/j.advwatres.2017.10.036
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10.1093/oso/9780198501787.001.0001
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Keywords 65N12
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References_xml – reference: AwanouGRectangular mixed elements for elasticity with weakly imposed symmetry conditionAdv. Comput. Math.201338235136710.1007/s10444-011-9240-1
– reference: CaillerieDNedelecJThe effect of a thin inclusion of high rigidity in an elastic bodyMath. Meth. Appl. Sci.19802325127010.1002/mma.1670020302
– reference: Evans, L.: Partial Differential Equations. Orient Longman (1998)
– reference: Nordbotten, J.M., Boon, W.M.: Modeling, structure and discretization of mixed-dimensional partial differential equations. In: Domain Decomposition Methods in Science and Engineering XXIV, Lecture Notes in Computational Science and Engineering (2017)
– reference: BoffiDFortinMBrezziFMixed Finite Element Methods and Applications. Springer Series in Computational Mathematics2013BerlinSpringer10.1007/978-3-642-36519-5
– reference: FlemischBBerreIBoonWFumagalliASchwenckNScottiAStefanssonITatomirABenchmarks for single-phase flow in fractured porous mediaAdv. Water Resour.201811123925810.1016/j.advwatres.2017.10.036
– reference: Keilegavlen, E., Berge, R., Fumagalli, A., Starnoni, M., Stefansson, I., Varela, J., Berre, I.: Porepy: an open-source software for simulation of multiphysics processes in fractured porous media. arXiv:1908.09869 (2019)
– reference: QuarteroniAValliADomain Decomposition Methods for Partial Differential Equations1999New YorkOxford University Press
– reference: SævikPNixonCInclusion of topological measurements into analytic estimates of effective permeability in fractured mediaWater Resour. Res.201753119424944310.1002/2017WR020943
– reference: ArnoldDNWintherRMixed finite elements for elasticityNumer. Math.200292340141910.1007/s002110100348
– reference: Boon, W.M., Nordbotten, J.M., Vatne, J.E.: Functional analysis and exterior calculus on mixed-dimensional geometries. Annali di Matematica Pura ed Applicata (1923-) (2020)
– reference: Licht, M.W.: Complexes of discrete distributional differential forms and their homology theory. Foundations of Computational Mathematics (2016)
– reference: BoonWMNordbottenJMYotovIRobust discretization of flow in fractured porous mediaSIAM J. Numer. Anal.20185642203223310.1137/17M1139102
– reference: GeuzaineCRemacleJFGmsh: a 3-d finite element mesh generator with built-in pre-and post-processing facilitiesInt. J. Numer. Meth. Eng.200979111309133110.1002/nme.2579
– reference: ArnoldDNFalkRSWintherRFinite element exterior calculus, homological techniques, and applicationsActa Numerica200615115510.1017/S0962492906210018
– reference: MartinVJaffréJRobertsJEModeling fractures and barriers as interfaces for flow in porous mediaSIAM J. Sci. Comput.20052651667169110.1137/S1064827503429363
– reference: BjørnaråTINordbottenJMParkJVertically integrated models for coupled two-phase flow and geomechanics in porous mediaWater Resour. Res.20165221398141710.1002/2015WR017290
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SubjectTerms A priori analysis
Composite materials
Differential equations
Differential geometry
Dimensions
Earth and Environmental Science
Earth Sciences
Elasticity
Geotechnical Engineering & Applied Earth Sciences
Hydrogeology
Inclusions
Intersections
Linear elasticity
Manifolds
Manifolds (mathematics)
Mathematical analysis
Mathematical Modeling and Industrial Mathematics
Mechanics
Mixed finite element
Mixed-dimensional
Momentum
Norms
Operators (mathematics)
Original Paper
Partial differential equations
Soil Science & Conservation
Stability
Tensors
Weak symmetry
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Title Stable mixed finite elements for linear elasticity with thin inclusions
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