Numerical simulation of motion and deformation of ring bubble along body surface
Numerical simulation for fluid flow over an attached rigid body with a deformable ring bubble is analyzed based on the velocity potential theory together with the boundary element method (BEM). The analysis is focused on the axisymmetric case. The bubble surface is treated as a well defined air-liqu...
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Veröffentlicht in: | Applied mathematics and mechanics 2013-12, Vol.34 (12), p.1495-1512 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Numerical simulation for fluid flow over an attached rigid body with a deformable ring bubble is analyzed based on the velocity potential theory together with the boundary element method (BEM). The analysis is focused on the axisymmetric case. The bubble surface is treated as a well defined air-liquid interface and is tracked by a mixed Eulerian-Lagrangian method. The points of intersection between the bubble and body are treated, specially in the numerical procedure. The auxiliary function method is adopted to calculate the pressure on the body surface and in the flow field. The convergence study is undertaken to assess the developed numerical method and the computation code. Some case studies are undertaken in which the interactions between the bubble/body and the incoming flow field are simulated. The effects of various physical parameters on the interactions are investigated. |
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ISSN: | 0253-4827 1573-2754 |
DOI: | 10.1007/s10483-013-1762-6 |