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NTIS 바로가기韓國海洋工學會誌 = Journal of ocean engineering and technology, v.29 no.6, 2015년, pp.427 - 435
박일룡 (동의대학교 조선해양공학과)
This paper provides the numerical results of a simulation of the flow around a propeller working beneath the free surface. A finite volume method is used to solve the unsteady Reynolds averaged Navier-Stokes (URANS) equations, where the wave-making problem is solved using a volume-of-fluid (VOF) met...
Baek, D.G., Yoon, H.S., Jung, J.H., Kim, K.S., Paik, B.G., 2015. Effects of the Advance Ratio on the Evolution of a Propeller Wake. Computers & Fluidsm, 118, 32-43.
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Paik, B.G., Kim, J., Park, Y.H., Kim, K.S., Kim, K.Y., 2005. PIV Aanalysis of Vortical Flow behind a Rotating Propeller in a Cavitation Tunnel. Journal of the Society of Naval Architects of Korea, 42(6), 17-25.
Paik, B.G., Lee, J.Y., Lee, S.J., 2008. Effect of Propeller Immersion Depth on the Flow Around a Marine Propeller. Journal of Ship Research, 52(2), 102-113.
Paik, B.G., Lee, S.J., 2003. PIV Velocity Field Measurements of Flow around a Ship with Rotating Propeller. Journal of the Society of Naval Architects of Korea, 40(5), 619-630.
Paik, K.J., Suh, S.B., Chun, H.H., 2000. Analysis of Contra-Rotating Propellers in Steady Flow by a Vortex Lattice Method. Journal of Ocean Engineering and Technology, 14(2), 36-43.
Suh, S.B., Jung, K.H., 2011. Calibration of Water Velocity Profile in Circular Water Channel Using Particle Image Velocimetry. Journal of Ocean Engineering and Technology, 25(4), 23-27.
Tokgoz, E., Chen, W.P., Yokota, S., Toda, Y., 2014. Application of New Body-Force Concept to the Free Surface Effect on the Hydrodynamic Force and Flow around a Rotating Propeller. Proceedings of the Twenty-fourth International Ocean and Polar Engineering Conference, Busan, Korea.
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