Delaunay Graph Based Inverse Distance Weighting for Fast Dynamic Meshing
From MaRDI portal
Publication:5159073
DOI10.4208/cicp.OA-2016-0085zbMath1488.65707MaRDI QIDQ5159073
Ning Qin, Ning Zhao, Yi-Bin Wang
Publication date: 26 October 2021
Published in: Communications in Computational Physics (Search for Journal in Brave)
Finite element methods applied to problems in fluid mechanics (76M10) Mesh generation, refinement, and adaptive methods for boundary value problems involving PDEs (65N50)
Cites Work
- Zipper layer method for linking two dissimilar structured meshes
- Delaunay graph and radial basis function for fast quality mesh deformation
- A fast mesh deformation method using explicit interpolation
- A parallel boundary fitted dynamic mesh solver for applications to flapping flight
- Efficient mesh motion using radial basis functions with data reduction algorithms
- Algebraic mesh quality metrics for unstructured initial meshes.
- Torsional springs for two-dimensional dynamic unstructured fluid meshes
- Applications of dynamic hybrid grid method for three-dimensional moving/deforming boundary problems
- A novel three-dimensional mesh deformation method based on sphere relaxation
- Fast dynamic grid deformation based on Delaunay graph mapping
- Mesh deformation based on artificial neural networks
- Finite macro‐element‐based volume grid deformation for large moving boundary problems
- Parallel efficient mesh motion using radial basis functions with application to multi-bladed rotors
- A simple mesh deformation technique for fluid-structure interaction based on a submesh approach
- Mesh deformation using the biharmonic operator
- Improved ALE mesh velocities for moving bodies
This page was built for publication: Delaunay Graph Based Inverse Distance Weighting for Fast Dynamic Meshing