Suchergebnisse - finite element methods applied to problems in fluid ((technical OR technische) OR technik)*
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A cut-cell finite volume – finite element coupling approach for fluid–structure interaction in compressible flow
ISSN: 0021-9991, 1090-2716Veröffentlicht: United States Elsevier Inc 15.02.2016Veröffentlicht in Journal of computational physics (15.02.2016)“… We present a loosely coupled approach for the solution of fluid–structure interaction problems between a compressible flow and a deformable structure …”
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Finite Element Method for Fluid Dynamics (6th Edition)
ISBN: 9780750663229, 0750663227, 1493302906, 9781493302901Veröffentlicht: Amsterdam ; Oxford ; Tokyo Elsevier 2005“… The new edition is a complete fluids text and reference in its own right. Along with its companion volumes it forms part of the indispensable Finite Element Method series …”
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Comparison of elements and state-variable transfer methods for quasi-incompressible material behaviour in the particle finite element method
ISSN: 0178-7675, 1432-0924, 1432-0924Veröffentlicht: Berlin/Heidelberg Springer Berlin Heidelberg 01.02.2025Veröffentlicht in Computational mechanics (01.02.2025)“… The Particle Finite Element Method (PFEM) is attractive for the simulation of large deformation problems, e.g …”
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Finite element method-enhanced neural network for forward and inverse problems
ISSN: 2213-7467, 2213-7467Veröffentlicht: Cham Springer International Publishing 13.05.2023Veröffentlicht in Advanced modeling and simulation in engineering sciences (13.05.2023)“… We introduce a novel hybrid methodology that combines classical finite element methods (FEM …”
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Finite cell method compared to h-version finite element method for elasto-plastic problems
ISSN: 0253-4827, 1573-2754Veröffentlicht: Heidelberg Shanghai University 01.10.2014Veröffentlicht in Applied mathematics and mechanics (01.10.2014)“… The finite cell method (FCM) combines the high-order finite element method (FEM) with the fictitious domain approach for the purpose of simple meshing …”
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Finite volume method for simulation of flowing fluid via OpenFOAM
ISSN: 2190-5444, 2190-5444Veröffentlicht: Berlin/Heidelberg Springer Berlin Heidelberg 01.10.2021Veröffentlicht in European physical journal plus (01.10.2021)“… Some basic information about OpenFOAM is also presented in the manuscript. The method used in the analysis for the simulation of the problem in the article is finite volume method (FVM …”
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A partitioned-monolithic finite element method for thermo-fluid–structure interaction
ISSN: 0045-7825, 1879-2138Veröffentlicht: Amsterdam Elsevier B.V 01.11.2022Veröffentlicht in Computer methods in applied mechanics and engineering (01.11.2022)“… In this study, a computational method for the coupled four-field problem of thermo-fluid …”
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MILAMIN: MATLAB-based finite element method solver for large problems
ISSN: 1525-2027, 1525-2027Veröffentlicht: Blackwell Publishing Ltd 01.04.2008Veröffentlicht in Geochemistry, geophysics, geosystems : G3 (01.04.2008)“… The finite element method (FEM) combined with unstructured meshes forms an elegant and versatile approach capable of dealing with the complexities of problems in Earth science …”
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Skeleton-stabilized immersogeometric analysis for incompressible viscous flow problems
ISSN: 0045-7825, 1879-2138Veröffentlicht: Amsterdam Elsevier B.V 01.02.2019Veröffentlicht in Computer methods in applied mechanics and engineering (01.02.2019)“… The proposed formulation fits within the framework of the finite cell method, where essential boundary conditions are imposed weakly using a Nitsche-type method …”
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A moving finite element framework for fast infiltration in nonlinear poroelastic media
ISSN: 1420-0597, 1573-1499Veröffentlicht: Cham Springer International Publishing 01.04.2021Veröffentlicht in Computational geosciences (01.04.2021)“… In this paper, we present a finite element solver for linear and nonlinear poroelasticity problems on triangular meshes based on the displacement-pressure two-field model …”
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Numerical simulation of unsteady dense granular flows with rotating geometries
ISSN: 0263-8762, 1744-3563Veröffentlicht: Rugby Elsevier B.V 01.04.2017Veröffentlicht in Chemical engineering research & design (01.04.2017)“… •The method is successfully applied to the simulation of a complex large scale stirrer. In chemical engineering applications, it is not uncommon to encounter reactors featuring rotating parts …”
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On the Design of Global-in-Time Newton-Multigrid-Pressure Schur Complement Solvers for Incompressible Flow Problems
ISSN: 1422-6928, 1422-6952Veröffentlicht: Cham Springer International Publishing 01.08.2023Veröffentlicht in Journal of mathematical fluid mechanics (01.08.2023)“… -stable finite element pair, the fundamental idea is to block the linear systems of equations …”
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A unified and modular coupling of particle methods with fem for civil engineering problems
ISSN: 2196-4378, 2196-4386Veröffentlicht: Cham Springer International Publishing 01.09.2023Veröffentlicht in Computational particle mechanics (01.09.2023)“… In this work, a modular coupling approach for particle methods with the FEM (finite element method) is presented …”
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Modular methodology applied to the nonlinear modeling of a pipe conveying fluid: A novel finite element method based approach
ISSN: 1678-5878, 1806-3691Veröffentlicht: Berlin/Heidelberg Springer Berlin Heidelberg 01.02.2018Veröffentlicht in Journal of the Brazilian Society of Mechanical Sciences and Engineering (01.02.2018)“… This paper proposes an extension of a modular modeling approach, originally developed for lumped parameter systems, to the derivation of FEM-discretized …”
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Numerical analysis of the full MHD model with the Galerkin finite-element method
ISSN: 2190-5444, 2190-5444Veröffentlicht: Berlin/Heidelberg Springer Berlin Heidelberg 01.05.2019Veröffentlicht in European physical journal plus (01.05.2019)“… These equations along with appropriate boundary conditions are simulated by employing the variational finite-element method for the important parameters of the problem …”
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FINITE ELEMENT APPROXIMATION OF STEADY FLOWS OF INCOMPRESSIBLE FLUIDS WITH IMPLICIT POWER-LAW-LIKE RHEOLOGY
ISSN: 0036-1429, 1095-7170Veröffentlicht: Philadelphia Society for Industrial and Applied Mathematics 01.01.2013Veröffentlicht in SIAM journal on numerical analysis (01.01.2013)“… of the problem as the finite element discretization parameter h tends to 0. A key new technical tool in our analysis is a finite element counterpart of the Acerbi-Fusco …”
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A Mortar Finite Element Formulation for Large Deformation Lubricated Contact Problems with Smooth Transition Between Mixed, Elasto-Hydrodynamic and Full Hydrodynamic Lubrication
ISSN: 1023-8883, 1573-2711Veröffentlicht: New York Springer US 01.03.2023Veröffentlicht in Tribology letters (01.03.2023)“… This work proposes a novel model and numerical formulation for lubricated contact problems describing the mutual interaction between two deformable 3D solid bodies and an interposed fluid film …”
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Fundamentals of Physics-Informed Neural Networks Applied to Solve the Reynolds Boundary Value Problem
ISSN: 2075-4442, 2075-4442Veröffentlicht: Basel MDPI AG 01.08.2021Veröffentlicht in Lubricants (01.08.2021)“… The objective with this technical note is not to develop a numerical solution procedure which is more accurate and efficient than standard finite element- or finite difference-based methods …”
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A novel node-to-segment algorithm in smoothed finite element method for contact problems
ISSN: 0178-7675, 1432-0924Veröffentlicht: Berlin/Heidelberg Springer Berlin Heidelberg 01.11.2023Veröffentlicht in Computational mechanics (01.11.2023)“… The proposed algorithm consists of the following technical ingredient: (1) A weighted smoothing technique is developed to accurately evaluate contact forces for contact problems; (2 …”
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Heat and mass transfer analysis of unsteady hybrid nanofluid flow over a stretching sheet with thermal radiation
ISSN: 2523-3963, 2523-3971Veröffentlicht: Cham Springer International Publishing 01.07.2020Veröffentlicht in SN applied sciences (01.07.2020)“… These equations together with boundary conditions are numerically evaluated by using finite-element method …”
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