A structured adaptive mesh refinement strategy with a sharp interface direct-forcing immersed boundary method for moving boundary problems
Author:
Affiliation:
1. Department of Mechanical Engineering, Keio University
Publisher
Japan Society of Mechanical Engineers
Subject
Fluid Flow and Transfer Processes,Mechanical Engineering
Link
https://www.jstage.jst.go.jp/article/jfst/16/2/16_2021jfst0014/_pdf
Reference55 articles.
1. Almgren, A. S., Bell, J. B., Colella, P., Howell, L. H., and Welcome, M. L., A conservative adaptive projection method for the variable density incompressible Navier-Stokes equations, Journal of Computational Physics, Vol. 142 (1998), pp. 1-46.
2. Angelidis, D., Chawdhary, S., and Sotiropoulos, F., Unstructured Cartesian refinement with sharp interface immersed boundary method for 3D unsteady incompressible flows, Journal of Computational Physics, Vol. 325 (2016), pp. 272-300.
3. Badri Ghomizad, M., Kor, H., and Fukagata, K., A sharp interface direct-forcing immersed boundary method using the moving least square approximation, Journal of Fluid Science and Technology, Vol. 16, No. 2 (2021), DOI:10.1299/jfst.2021jfst0013.
4. Bayyuk, S. A., Powell, K. G., and van Leer, B., A simulation technique for 2-D unsteady inviscid flows around arbitrarily moving and deforming bodies of arbitrary geometry, Proceedings of the 11th Computational Fluid Dynamics Conference (1993), Paper No. AIAA-93-3391-CP.
5. Berger, M. J. and Colella, P., Local adaptive mesh refinement for shock hydrodynamics, Journal of Computational Physics, Vol. 82 (1989), pp. 64-84.
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