Computational performance of a parallelized three-dimensional high-order spectral element toolbox
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Publication:365248
DOI10.1016/j.compfluid.2010.11.014zbMath1271.76223OpenAlexW2090421213MaRDI QIDQ365248
Roland Bouffanais, Jonas Latt, Christoph Bosshard, Ralf Gruber, Michel O. Deville
Publication date: 4 September 2013
Published in: Computers and Fluids (Search for Journal in Brave)
Full work available at URL: http://www.sciencedirect.com/science/article/pii/S0045793010003269
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Parallelization strategies for computational fluid dynamics software: state of the art review ⋮ Parallel computing strategy for a flow solver based on immersed boundary method and discrete stream-function formulation ⋮ A collocatedC0finite element method: Reduced quadrature perspective, cost comparison with standard finite elements, and explicit structural dynamics ⋮ Global spectral analysis: review of numerical methods ⋮ Palabos: parallel lattice Boltzmann solver ⋮ Global spectral analysis of multi-level time integration schemes: numerical properties for error analysis ⋮ Large eddy simulation of the differentially heated cubic cavity flow by the spectral element method
Uses Software
Cites Work
- Optimal error analysis of spectral methods with emphasis on non-constant coefficients and deformed geometries
- Parallel spectral element solution of the Stokes problem
- Solution of moving-boundary problems by the spectral element method
- A new domain decomposition method with overlapping patches for ultrascale simulations: application to biological flows
- Spectral-element preconditioners for the Uzawa pressure operator applied to incompressible flows
- An object-oriented toolbox for spectral element analysis
- Large-eddy simulation of the flow in a lid-driven cubical cavity
- High-Order Methods for Incompressible Fluid Flow
- Spectral/hp Element Methods for Computational Fluid Dynamics
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