Moving-body simulations using overset framework with rigid body dynamics
The simulation of flow past bodies in relative motion is a challenging task due to the presence of complex flow features, moving grids, and rigid body movements under the action of external forces and moments. A generalized grid-based overset framework is presented for the simulation of this class of problems. The equations that govern the fluid flows are cast in an integral form and are solved using a cell-centered finite volume upwind scheme. The rigid body dynamics equations are formulated using quaternion and are solved using fourth-order Runge–Kutta (RK) time integration. The overset framework and the six degree of freedom (6-DOF) rigid body dynamics simulators are developed in a library form for easy incorporation into existing flow solvers. The details of the flow solver, the 6-DOF library, and the overset framework are presented in this paper along with the validation results of the developed system.
Year of publication: |
2008
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Authors: | Koomullil, Roy ; Cheng, Gary ; Soni, Bharat ; Noack, Ralph ; Prewitt, Nathan |
Published in: |
Mathematics and Computers in Simulation (MATCOM). - Elsevier, ISSN 0378-4754. - Vol. 78.2008, 5, p. 618-626
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Publisher: |
Elsevier |
Subject: | Overset grids | Rigid body dynamics | Moving-body problems | Library approach |
Saved in:
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