SOLUTION OF TIME-PERIODIC WAVE EQUATION USING MIXED FINITE ELEMENTS AND CONTROLLABILITY TECHNIQUES
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Publication:5169356
DOI10.1142/S0218396X11004377zbMath1291.76202OpenAlexW2025853198WikidataQ109564578 ScholiaQ109564578MaRDI QIDQ5169356
Tuomo Rossi, Raino A. E. Mäkinen, S. Kähkönen, Roland Glowinski
Publication date: 22 July 2014
Published in: Journal of Computational Acoustics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1142/s0218396x11004377
Hydro- and aero-acoustics (76Q05) Finite element methods applied to problems in fluid mechanics (76M10)
Related Items (5)
On the accuracy and efficiency of transient spectral element models for seismic wave problems ⋮ A Controllability Method for Maxwell's Equations ⋮ Fully scalable solver for frequency-domain visco-elastic wave equations in 3D heterogeneous media: a controllability approach ⋮ An optimization-based approach for solving a time-harmonic multiphysical wave problem with higher-order schemes ⋮ On controllability methods for the Helmholtz equation
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- A mixed formulation and exact controllability approach for the computation of the periodic solutions of the scalar wave equation. I: Controllability problem formulation and related iterative solution
- Time-harmonic elasticity with controllability and higher-order discretization methods
- Comparison between the shifted-Laplacian preconditioning and the controllability methods for computational acoustics
- Controllability method for the Helmholtz equation with higher-order discretizations
- An algebraic multigrid based shifted-Laplacian preconditioner for the Helmholtz equation
- Mixed and Hybrid Finite Element Methods
- Exact and Approximate Controllability for Distributed Parameter Systems
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