Fluid–structure interaction analysis of flexible composite marine propellers

Journal of Fluids and Structures - Tập 24 Số 6 - Trang 799-818 - 2008
Yin Lu Young1
1Department of Civil and Environmental Engineering Princeton University Princeton, NJ 08544 USA

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ABAQUS, 2004. ABAQUS Version 6.5 Documentation. ABAQUS, Inc., 1080 Main Street, Pawtucket, RI 02860, USA.

Anon, 2003. World's largest composite propeller successfully completes sea trials. The Naval Architect 16.

Ashkenazi, 1974

Brillouin, 1911, Les surfaces de glissement de Helmholtz et la resistance des fluides, Annales de Chimie and de Physique, 23, 145

Chen, B., Neely, S., Michael, T., Gowing, S., Szwerc, R., Buchler, D., Schult, R., 2006. Design, fabrication and testing of pitch-adapting (flexible) composite propellers. In: The SNAME Propeller/Shafting Symposium. Williamsburg, VA, USA.

Choi, J., 2000. Vortical inflow—propeller interaction using unsteady three-dimensional Euler solver. Ph.D. Thesis, Department of Civil Engineering, The University of Texas at Austin, TX, USA.

Greeley, 1982, Numerical methods for propeller design and analysis in steady flow, Transactions, Society of Naval Architects and Marine Engineers, 90, 415

Hashin, 1980, Failure criteria for unidirectional fiber composites, Journal of Applied Mechanics, 47, 329, 10.1115/1.3153664

Kane, 1994, Marine propulsors design in fibre reinforced plastics, Journal of Defense Science, 4, 301

Kerwin, 1978, Prediction of steady and unsteady marine propeller performance by numerical lifting-surface theory, Transactions, Society of Naval Architects and Marine Engineers, 86, 218

Kinnas, S., Fine, N., August 1992. A nonlinear boundary element method for the analysis of unsteady propeller sheet cavitation. In: Nineteenth Symposium on Naval Hydrodynamics, Seoul, Korea, pp. 717–737.

Kinnas, 1993, A numerical nonlinear analysis of the flow around two- and three-dimensional partially cavitating hydrofoils, Journal of Fluid Mechanics, 254, 151, 10.1017/S0022112093002071

Kinnas, 2003, Modeling of cavitating or ventilated flows using bem, International Journal of Numerical Methods for Heat & Fluid Flow, 13, 672, 10.1108/09615530310498376

Kinnas, S., Choi, J., Lee, H., Young, J., 2000. Numerical cavitation tunnel. In: NCT50, International Conference on Propeller Cavitation, Newcastle-upon-Tyne, England.

Lee, 2004, Optimized design of composite propeller, Mechanics of Advanced Materials and Structures, 11, 17, 10.1080/15376490490257639

Lin, G., 1991a. Comparative stress-deflection analyses of a thick-shell composite propeller blade. Technical Report, David Taylor Research Center, DTRC/SHD-1373-01.

Lin, G., 1991b. Three-dimensional stress analyses of a fiber-reinforced composite thruster blade. In: Symposium on Propellers/Shafting, Society of Naval Architects and Marine Engineers, Virginia Beach, VA, USA.

Lin, 2004, Stacking sequence optimization of laminated composite structures using genetic algorithm with local improvement, Composite Structures, 63, 339, 10.1016/S0263-8223(03)00182-X

Lin, 1996, Nonlinear hydroelastic behavior of propellers using a finite element method and lifting surface theory, Journal of Marine Science and Technology, 1, 114, 10.1007/BF02391167

Lin, H., Lin, J., 1997. Effect of stacking sequence on the hydroelastic behavior of composite propeller blades. In: Eleventh International Conference on Composite Materials, Australian Composite Structures Society, Gold Coast, Australia.

Lin, 2005, Strength evaluations of a composite marine propeller blade, Journal of Reinforced Plastics and Composites, 17, 1791, 10.1177/0731684405052199

Mouritz, 2001, Review of advanced composite structures for naval ships and submarines, Composite Structures, 53, 21, 10.1016/S0263-8223(00)00175-6

Pagano, 1969, Exact solution for composite laminates in cylindrical bending, Journal of Composite Materials, 3, 398, 10.1177/002199836900300304

Pegg, 1987, Progress in naval composites, Advanced Materials and Processes, 3, 35

Searle, 1994, Are composite propellers the way forward for small boats, Materials World: The Journal of the Institute of Materials, 2, 69

Villat, 1914, Sur la validité des solutions de certain problème d’ hydrodynamique, Journal de Mathématiques, 6, 231

Womack, 1993, Carbon propeller allows ships to go softly softly, Engineer, 276, 30

Young, 2007, Time-dependent hydroelastic analysis of cavitating propulsors, Journal of Fluids and Structures, 23, 269, 10.1016/j.jfluidstructs.2006.09.003

Young, 2001, A BEM for the prediction of unsteady midchord face and/or back propeller cavitation, ASME Journal of Fluids Engineering, 123, 311, 10.1115/1.1363611

Young, 2003, Analysis of supercavitating and surface-piercing propeller flows via bem, Journal of Computational Mechanics, 32, 269, 10.1007/s00466-003-0484-6

Young, 2003, Numerical modeling of supercavitating propeller flows, Journal of Ship Research, 47, 48, 10.5957/jsr.2003.47.1.48

Young, 2004, Performance prediction of surface-piercing propellers, Journal of Ship Research, 48, 288, 10.5957/jsr.2004.48.4.288