Bulletin of the American Physical Society
74th Annual Meeting of the APS Division of Fluid Dynamics
Volume 66, Number 17
Sunday–Tuesday, November 21–23, 2021; Phoenix Convention Center, Phoenix, Arizona
Session H18: Computational Fluid Dynamics: Algorithms I
8:00 AM–10:10 AM,
Monday, November 22, 2021
Room: North 131 C
Chair: Dorrin Jaranbashi, Texas A&M University
Abstract: H18.00010 : A Novel Adaptive Variational Fully-Eulerian Scheme for Fluid-Structure Interaction
9:57 AM–10:10 AM
Presenter:
Biswajeet Rath
(University of British columbia)
Authors:
Biswajeet Rath
(University of British columbia)
Xiaoyu Mao
(University of British Columbia)
Rajeev K Jaiman
(University of British Columbia)
interaction with flexible multibody contact dynamics e.g., self-contact between octopus arms or
large topological changes of soft solids. We present a novel interface-driven adaptive model using
the fully-Eulerian method for FSI problems. The fully-Eulerian approach involves a fixed background
mesh on which the interface is represented implicitly. The two domains are modeled by the phase-
field finite element formulation using the convective Allen-Cahn equation coupled with the unified
continuum equations. The adaptive refinement/coarsening for the unstructured grid is determined
by appropriate indicators and carried out by the newest vertex bisection algorithm. We perform a
detailed convergence and accuracy analysis via two benchmark problems namely the pure solid
system and a coupled fluid-solid system with an interface in a rectangle domain. We next
systematically assess the performance of the adaptive procedure for the increasing complexity of
problems. Finally, we demonstrate our fully-Eulerian interface-driven adaptive FSI model to simulate
the contact problem between an elastic and rigid solid using a popular bouncing elastic ball problem.
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