期刊
OCEAN ENGINEERING
卷 265, 期 -, 页码 -出版社
PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.oceaneng.2022.112602
关键词
Interaction; CFD; Hydrodynamic performance; SUBOFF; KVLCC2
资金
- China National Science Foundation [U2141228]
This study numerically investigated the hydrodynamic interaction to the submarine during the overtaking process by surface ships. The results showed that the vertical distance between the tanker and submarine had a significant influence on the submarine, and the forward speed of both the tanker and submarine affected the vertical force and pitching moment of the submarine.
Submarine is easily disturbed by the passing surface ships when submarine sailing near the sea surface, the disturbance can greatly affect the hydrodynamic performance and sailing status of the submarine during navi-gation. In this study, A model-scale tanker (KVLCC2,LPP = 32m) and a model-scale submarine (SUBOFF,Loa = 6.534m) were used to study the hydrodynamic interaction to the submarine when the surface ship overtakes the submarine sailing below it. An in-house unsteady Reynolds-averaged Navier-Stokes solver was applied to the simulation. First, uncertainty analysis of the computational fluid dynamics (CFD) solver was conducted, and validation study based on available experimental data showed good agreement. The hydrodynamic interaction to the submarine during the overtaking process was then investigated numerically with different submarine for-ward speed, tanker forward speed and different tanker-submarine vertical distance. The results showed that the vertical distance between tanker and submarine has great influence on submarine, the peak values of vertical force and pitching moment of submarine were obviously affected by the forward speed of tanker and submarine, meanwhile, The interaction force on submarine resistance was less effected by submarine forward speed, but the forward speed of tanker was more effected.
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