Modelling local scour near structures with combined mesh movement and mesh optimisation
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Publication:2002327
DOI10.1016/j.jcp.2018.09.026zbMath1416.76123OpenAlexW2890840272MaRDI QIDQ2002327
M. D. Piggott, J. M. Nunez Rattia, James R. Percival, Stephen J. Neethling
Publication date: 11 July 2019
Published in: Journal of Computational Physics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.jcp.2018.09.026
Navier-Stokes equations for incompressible viscous fluids (76D05) Finite element methods applied to problems in fluid mechanics (76M10) Suspensions (76T20) Mesh generation, refinement, and adaptive methods for the numerical solution of initial value and initial-boundary value problems involving PDEs (65M50)
Cites Work
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- Conservative interpolation between volume meshes by local Galerkin projection
- Conservative interpolation between unstructured meshes via supermesh construction
- A high-order accurate discontinuous finite element method for the numerical solution of the compressible Navier-Stokes equations
- A vertex-based hierarchical slope limiter for \(p\)-adaptive discontinuous Galerkin methods
- On the implementation of the \(\kappa -\varepsilon \) turbulence model in incompressible flow solvers based on a finite element discretisation
- Torsional springs for two-dimensional dynamic unstructured fluid meshes
- Anisotropic mesh adaptation for CFD computations
- Continuous Mesh Framework Part I: Well-Posed Continuous Interpolation Error
- Anisotropic mesh adaptivity for multi-scale ocean modelling
- Adaptivity with moving grids
- High Resolution Schemes Using Flux Limiters for Hyperbolic Conservation Laws
- On the development of dunes in erodible channels
- Finite element modelling of local scour below a pipeline under steady currents
- A new computational framework for multi‐scale ocean modelling based on adapting unstructured meshes
- An adaptive algorithm for quasioptimal mesh generation
- Tetrahedral mesh optimisation and adaptivity for steady-state and transient finite element calculations