Methods of mesh deformation for FSI problems
Numerical methods and programming, Tome 14 (2013) no. 3, pp. 269-278
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A number of methods for mesh deformation in the simulation of fluid-structure interaction (FSI) are considered. The FSI problems are solved in arbitrary Lagrangian–Eulerian formulation. The capabilities of meshless interpolation algorithms for mesh node movements that provide a large deformation without degeneration of cells are analyzed.
Keywords:
fluid-structure interaction; mesh deformation; Shepard method; radial basis functions; parallel computing.
@article{VMP_2013_14_3_a0,
author = {S. P. Kopysov and I. M. Kuz'min and L. E. Tonkov},
title = {Methods of mesh deformation for {FSI} problems},
journal = {Numerical methods and programming},
pages = {269--278},
year = {2013},
volume = {14},
number = {3},
language = {ru},
url = {http://geodesic.mathdoc.fr/item/VMP_2013_14_3_a0/}
}
S. P. Kopysov; I. M. Kuz'min; L. E. Tonkov. Methods of mesh deformation for FSI problems. Numerical methods and programming, Tome 14 (2013) no. 3, pp. 269-278. http://geodesic.mathdoc.fr/item/VMP_2013_14_3_a0/