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Moving immersed boundary method for fluid-solid interaction
DOI:10.1063/5.0088302.png)
Abstract
En 中文
A strongly coupled algorithm is presented for the incompressible fluid-rigid body interaction using the moving immersed boundary method. The pressure and the boundary force are treated as Lagrange multipliers to enforce the incompressibility and no-slip wall constraints. To compute the two unknowns from the velocity field, we adopt the fractional step algorithm and successively apply the two constraints. A Poisson equation and a moving force equation are derived for the pressure and the boundary force, respectively. As both coefficient matrices are formulated to be symmetric and positive-definite, the resulting linear systems are solved efficiently with the conjugate gradient solver. The strongly coupled nonlinear fluid-solid system is achieved by a fixed-point iteration. To improve the computational efficiency, we only iterate the moving force equation with the rigid body motion equation, and the time-consuming pressure Poisson equation is solved once the sub-iteration is finished. The proposed method is validated with various benchmark tests, and the results compare well with the literature. Published under an exclusive license by AIP Publishing.
Keywords:
DIRECT NUMERICAL-SIMULATION
FLOW PATTERNS
RIGID BODIES
Journal
IF:
4.3
Papers:
2.9W
Citations:
8.0W

