Coupling the Curvilinear Immersed Boundary Method with Rotation-Free Finite Elements for Simulating Fluid–Structure Interaction: Concepts and Applications
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Publisher
Springer Singapore
Link
http://link.springer.com/content/pdf/10.1007/978-981-15-3940-4_4
Reference54 articles.
1. Angelidis D, Chawdhary S, Sotiropoulos F (2016) Unstructured Cartesian refinement with sharp interface immersed boundary method for 3D unsteady incompressible flows. J Comput Phys 325:272–300
2. Baek H, Karniadakis GE (2012) A convergence study of a new partitioned fluid–structure interaction algorithm based on fictitious mass and damping. J Comput Phys 231:629–652
3. Barker AT, Cai X (2010) Scalable parallel methods for monolithic coupling in fluid–structure interaction with application to blood flow modeling. J Comput Phys 229:642–659
4. Bazilevs Y, Hsu M-C, Scott MA (2012) Isogeometric fluid–structure interaction analysis with emphasis on non-matching discretizations, and with application to wind turbines. Comput Methods Appl Mech Eng 249:28–41
5. Borazjani I (2013) Fluid–structure interaction, immersed boundary-finite element method simulations of bio-prosthetic heart valves. Comput Methods Appl Mech Eng 257:103–116
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