Trans RINA, Vol 161, Part A4, Intl J Maritime Eng, Oct-Dec 2019
MS Thesis, Naval Postgraduate School, Monterey, CA, Jun 1988.
31. 32. 33.
RHOADES, M.M., “A Study of the airwake aerodynamics over the flight deck of an AOR model ship”, MS Thesis, Naval Postgraduate School, Monterey, CA, Sep 1990.
ANDERSON, G.A., "Mapping the Airwake of a Model DD-963 Along specific Helicopter Flight Paths", MS Thesis, Naval Postgraduate School, Monterey, CA, Dec 1989.
KAARIA, C.H., WANG, Y., WHITE, M.D., OWEN, I., "An experimental technique for evaluating the aerodynamic impact of ship superstructures on helicopter operations", Ocean Engineering 61, 2013 , pp 97-108.
34.
FORREST, J.S., KAARIA, C.H., OWEN, I., "Evaluating ship superstructure aerodynamics for maritime helicopter operations through CFD and flight simulation", The Aeronautical Journal, Available on CJO 2016 doi:10.1017/aer.2016.76, Jul 2016, pp 1-26.
35.
LUMSDEN, B., WILKINSON, C.H., PADFIELD, G.D., "Challenges at the helicopter-ship dynamic interface", 24th European Rotorcraft Forum, Marseilles, France, 15-17 Sep 1998.
36. 37. 38.
NEWMAN, S., "Safety of shipborne helicopter operations", Measurement+Control, Vol 37/2,
www.instmc.org.uk, Mar 2004. pp 44-52.
FORREST, J.S., OWEN, I., "An investigation of ship airwakes using Detached Eddy Simulation", Computers and Fluids 39, 2010, pp 656-673.
KAARIA, C.H., WANG, Y., PADFIELD, G.D., FORREST, J.S., OWEN, I., "Aerodynamic loading characteristics of a model-scale helicopter in a ship's airwake", DOI: 10.2514/1.C031535, Journal of Aircraft, Vol 49 No 5, Sep-Oct 2012, pp 1271-1278.
39. 40. 41. 42.
TAI TC and CARICO D, “Simulation of DD-963 Ship Airwake by Navier-Stokes Method”, J of Aircraft 32/6, 1995, pp 1399-1401.
TAI TC, “Effect of Ship Motion on DD-963 Ship Airwake Simulated by Multizone Navier-Stokes Solution”, 21 Symposium on Naval Hydrodynamics (2001), pp 1007-1017.
CAP 437 "Offshore Helicopter Landing Areas - Guidance on Standards", Sixth Edition, August 2010, Safety Regulation Group, Civil Aviation Authority, UK, ISBN 978 0 11792 439 0.
SILVA, D.F.C., PAGOT, P.R., NADER, G., JABARDO, P.J.S., "CFD Simulation and wind tunnel investigation of a FPSO offshore helideck turbulent flow", Proceedings of the ASME 2010 29th International Conference on Ocean, Offshore and Arctic Engineering, OMAE2010, June 6-11, 2010, Shanghai, China.
43.
Research and Technical Organisation (RTO) AGARDograph 300, Flight Tests Techniques Series, Vol 22, "Helicopter/Ship Qualification Testing", NATO Feb 2003.
54. 51. 44.
45. 46. 47.
CAA paper 2004/03, "Helicopter Turbulence Criteria for Operations to Offshore Platforms", Safety Regulation Group, Civil Aviations Authority, UK, Sep 2004, ISBN 0 86039 962 1.
Ship Interface, EH-101, Issue 7, December 2001, Augusta Westland Publication.
NORSOK standard, C-004, Rev 1, September 2004, Standards Norway Publication.
DNV Offshore Standard, DNV-OS-E401, Helicopter Decks, March 2001.
48. MAKKAR, I.S., VIJAYAKUMAR, R., SINGH, S.N., SINHA, S.S., “Study of dynamic flow effects due to ship air wake and rotor downwash interaction on warship helo-decks”, The Royal Institution of Naval Architects International Conference Warships 2016: Advanced Technologies in Naval Design, Construction & Operation, 15-16 Jun 2016, Bath, UK, pp 47-63.
49.
KULKARNI, P.R., SINGH, S.N., SESHADRI, V., “A study of Smoke Nuisance Problem on Ships- A Review”, International Journal of Marine Engineers, Proceedings of Royal Institute Naval Architecture Part A2 2005a Vol. 147, pp 27-50
50.
KULKARNI, P.R., SINGH, S.N., SESHADRI, V., "Experimental Study of flow field over a simplified Superstructure of a Ship”, International Journal of Marine Engineers, Proceedings of Royal Institute Naval Architecture, Part A3 2005b. Vol. 147, pp 19-42.
KULKARNI, P.R., SINGH, S,N., SESHADRI, V., “Parametric Investigation of Exhaust Smoke Superstructure Interaction on Naval Ships using CFD”, Journal of Computer & Fluids, Volume 36, Issue 4, May 2007, Pages 794-816.
52.
VIJAYAKUMAR, R., SINGH, S.N., SESHADRI, V., KULKARNI, P.R., “Optimising funnel height to avoid smoke nuisance problem”, Journal of Ship Technology, Volume 4, NO2, Jul 2008, pp 30-40.
53.
VIJAYAKUMAR, R., SINGH, S.N., SESHADRI, V., “CFD prediction of Hot exhaust from the funnel of a Naval Ships in presence of Ship Superstructure”, International Journal of Marine Engineers, Proceedings of Royal Institute Naval Architecture, Part A1 2014. Vol. 156, pp 1-24.
VIJAYAKUMAR, R., SINGH, S.N., SESHADRI, V., KULKARNI, P.R., “Flow visualization studies of exhaust smoke interaction with superstructure and Intake on generic Naval Ships”, Naval Engineering Journal, American Society of Mechanical Engineers Sep 2012; pp129-143
55. 56.
LANDSBERG A.M. and W. C. SANDBERG, T.R. YOUNG “DDG 51 Flight II A Airwake Study: Hangar interior Flow”, Naval Research Laboratory Memorandum Report 96-7898, 1996
LANDSBERG, A. M., BORIS, J., SANDBERG, W. C. and YOUNG, T. R. “Analysis of The
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