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Flexible rod-fluid interaction based on an improved localized radial basis function collocation method
DOI:10.1016/j.advengsoft.2026.104164.png)
Abstract
En 中文
• Introducing a compact upwind support domain improves the stability of the LRBFCM. • The staggered node scheme effectively suppresses pressure instabilities in Navier-Stokes fluid-structure interaction. • This method significantly improves computational efficiency for membrane damped fluid-structure interaction motion. • The method accurately captures tail oscillations of flexible rods in long-channel flow. • Compared to traditional finite difference methods, this method demonstrates significant performance improvements.
Keywords:
Flexible rod-fluid interaction
Localized radial basis function collocation method
Upwind support domain
Staggered node scheme
Computational efficiency
Journal
IF:
5.7
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3.3K
Citations:
1.2W

