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A posteriorierror estimates for elliptic problems with Dirac measure terms in weighted spaces
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The Finite Element Method: Theory, Implementation, and Applications
Mats G. Larson and Fredrik Bengzon Texts in Computational Science and Engineering, The Finite Element Method: Theory, Implementation, and Applications 10 177 (2013) https://doi.org/10.1007/978-3-642-33287-6_7
Finite and Boundary Element Tearing and Interconnecting Solvers for Multiscale Problems
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Locally conservative projection methods: benchmarking and practical implementation
Antoine Alexandre Journeaux, Prof. Norio Takahashi, Nicolas Nemitz and Olivier Moreau COMPEL: The International Journal for Computation and Mathematics in Electrical and Electronic Engineering 33(1/2) 663 (2013) https://doi.org/10.1108/COMPEL-03-2013-0091
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Clemens Pechstein Lecture Notes in Computational Science and Engineering, Finite and Boundary Element Tearing and Interconnecting Solvers for Multiscale Problems 90 157 (2013) https://doi.org/10.1007/978-3-642-23588-7_3
Anisotropic mixed finite elements for elasticity
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Partial expansion of a Lipschitz domain and some applications
Anisotropic mesh adaptation driven by a recovery‐based error estimator for shallow water flow modeling
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A priori and a posteriori estimates for three‐dimensional Stokes equations with nonstandard boundary conditions
Hyam Abboud, Fida El Chami and Toni Sayah Numerical Methods for Partial Differential Equations 28(4) 1178 (2012) https://doi.org/10.1002/num.20676
An explicit residual‐type error estimator for ‐quadrilateral extended finite element method in two‐dimensional linear elastic fracture mechanics
T. Gerasimov, M. Rüter and E. Stein International Journal for Numerical Methods in Engineering 90(9) 1118 (2012) https://doi.org/10.1002/nme.3363
On a hierarchical error estimator combined with a stabilized method for the Navier–Stokes equations
Rodolfo Araya, Abner H. Poza and Frédéric Valentin Numerical Methods for Partial Differential Equations 28(3) 782 (2012) https://doi.org/10.1002/num.20656
Augmented mixed finite element methods for a vorticity‐based velocity–pressure–stress formulation of the Stokes problem in 2D
Gabriel N. Gatica, Luis F. Gatica and Antonio Márquez International Journal for Numerical Methods in Fluids 67(4) 450 (2011) https://doi.org/10.1002/fld.2362
A Defect‐Correction Method for Time‐Dependent Viscoelastic Fluid Flow Based on SUPG Formulation
Yunzhang Zhang, Yanren Hou, Ganshan Yang and M. De la Sen Discrete Dynamics in Nature and Society 2011(1) (2011) https://doi.org/10.1155/2011/689804
An anisotropic Zienkiewicz–Zhu‐type error estimator for 3D applications
P. E. Farrell, S. Micheletti and S. Perotto International Journal for Numerical Methods in Engineering 85(6) 671 (2011) https://doi.org/10.1002/nme.2980
Numerical Mathematics and Advanced Applications 2009
A finite element discretization of the contact between two membranes
Faker Ben Belgacem, Christine Bernardi, Adel Blouza and Martin Vohralík ESAIM: Mathematical Modelling and Numerical Analysis 43(1) 33 (2009) https://doi.org/10.1051/m2an/2008041
A stopping criterion for the conjugate gradient algorithm in the framework of anisotropic adaptive finite elements
Fundamentals of Fluid-Solid Interactions - Analytical and Computational Approaches
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Numerical simulation of blood flows through a porous interface
Miguel A. Fernández, Jean-Frédéric Gerbeau and Vincent Martin ESAIM: Mathematical Modelling and Numerical Analysis 42(6) 961 (2008) https://doi.org/10.1051/m2an:2008031
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A projection semi‐implicit scheme for the coupling of an elastic structure with an incompressible fluid
M. A. Fernández, J.‐F. Gerbeau and C. Grandmont International Journal for Numerical Methods in Engineering 69(4) 794 (2007) https://doi.org/10.1002/nme.1792
APrioriand aPosterioriError Analysis of a Wavelet-Based Stabilization for the Mixed Finite Element Method
On a stabilized colocated Finite Volume scheme for the Stokes problem
Robert Eymard, Raphaèle Herbin and Jean Claude Latché ESAIM: Mathematical Modelling and Numerical Analysis 40(3) 501 (2006) https://doi.org/10.1051/m2an:2006024
Residual-based a posteriori error estimate for a mixed Reißner-Mindlin plate finite element method
Residual based a posteriori error estimators for eddy current computation
Rudi Beck, Ralf Hiptmair, Ronald H.W. Hoppe and Barbara Wohlmuth ESAIM: Mathematical Modelling and Numerical Analysis 34(1) 159 (2000) https://doi.org/10.1051/m2an:2000136
Approximation spline de surfaces de type explicite comportant des failles
F. H. Bertrand, M. R. Gadbois and P. A. Tanguy International Journal for Numerical Methods in Engineering 33(6) 1251 (1992) https://doi.org/10.1002/nme.1620330610
Approximation of radial functions by piecewise polynomials on arbitrary grids
Y. Tourigny, J. M. Sanz‐Serna and J. Li. Morris Numerical Methods for Partial Differential Equations 7(1) 1 (1991) https://doi.org/10.1002/num.1690070102
Estimateurs a posteriori d'erreur pour le calcul adaptatif d'écoulements quasi-newtoniens
José Luis Menaldi and Edmundo Rofman Lecture Notes in Mathematics, Mathematical Aspects of Finite Element Methods 606 204 (1977) https://doi.org/10.1007/BFb0064464