박사

정합장처리 기법을 이용한 프로펠러 소음원 위치 및 변동압력 예측기법 연구 = A study on propeller noise source localization and hull pressure estimation using matched field processing technique

김동호 2015년
논문상세정보
' 정합장처리 기법을 이용한 프로펠러 소음원 위치 및 변동압력 예측기법 연구 = A study on propeller noise source localization and hull pressure estimation using matched field processing technique' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • loading noise
  • matched field inversion method
  • propeller non-cavitating noise
  • propeller tip vortex cavitation
  • source localization
  • thickness noise
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
23 0

0.0%

' 정합장처리 기법을 이용한 프로펠러 소음원 위치 및 변동압력 예측기법 연구 = A study on propeller noise source localization and hull pressure estimation using matched field processing technique' 의 참고문헌

  • Z. H. Michalopoulou and M. B. Porter, Source tracking in the Hudsoncanyon experiment, Journal of Computational Acoustics 4(4), 371-383, 1996.
  • Y. Lecoffre, “Cavitation-Bubble Trackers” (Balkema, Leiden, Netherlands,1996).
  • T. Wu, Boundary Element Acoustics (WIT Press, Southampton, 2000).
  • S. P. Czenszak and J. L. Krolik, Robust wideband matched-field processingwith a short vertical array, Journal of Acoustical Society of America 101(2),749-759, 1996.
  • S. Kirkpatrick, C.D. Gellatt, and M.P.Vecchi, Optimization by simulatedAnnealing, Science New Series 220(4598), 671-680, 1983.120
  • S. E. Dosso, M. L. Yeremy, J. M. Ozard, and N. R. Chapman, Estimationof ocean-bottom properties by match-field inversion of acoustic field data, IEEEJournal of Oceanic Engineering 18, 232-239, 1993.
  • S. E. Dosso, M. J. Wilmut, and A. S. Lapinski, An adaptive-hybridalgorithm for geoacoustic inversion, IEEE J. Oceanic Eng. 26(3), 324-336, 2001.
  • S. D. Sharma, K. Mani, and V.H. Arakeri, Cavitation noise studies onmarine propellers, Journal of Sound and Vibration 138(2), 255-283, 1990.
  • R. Kinns and C.D. Bloor, Hull vibration excitation due to monopole anddipole propeller sources, Journal of Sound and Vibration 270, 951-980, 2004.
  • R. Kinns and C.D. Bloor, Fluctuating hull force due to propeller cavitation,Transactions of the Royal Institution of Naval Architects Part A 144, 41-70, 2002.
  • R. J. Boswell, “Design, cavitation performance, and open-water performanceof a series of research skewed propellers”, Report, Defence Technical InformationCenter, Accession no. AD0732511, David W Taylor Naval Ship Research andDevelopment Center BETHESDA MD, 1971.
  • Q. Yang, Y. Wang, and M. Zhang, “Calculation of propeller’s load noiseusing LES and BEM numerical acoustics coupling method”, WIT Transaction onModelling and Simulation-Boundary element and other reduction methods XXXIII52, 85-97, 2011.
  • Propeller noise source inversion and hull fluctuating pressureestimation
    J. Lee 서울대학교 박사 학위 논문 [2012]
  • N.R. Chapman, Estimation of geoacoustic properties by inversion of acousticfield data, Shear Waves in Marine Sediments, Kluwer Academic Publisher,511?519, 1991.
  • N. A. Chang and S. L. Ceccio, The acoustic emission of cavitation bubblesin stretched vortices, Journal of Acoustical Society of America 130(5), 3209-3219,2010.
  • N. A. Chang and D. R. Dowling, Ray-based acoustic localization ofcavitation in a highly reverberant environment”, Journal of Acoustical Society ofAmerica 125(5), 3088-3100, 2009.
  • N. A. Brown, “Cavitation noise problems and solutions”, Proceedings ofInternational Symposium on Shipboard Acoustics, Noordwijkehout, Netherlands,117September, 1976.
  • M.D. Collins, W.A. Kuperman, and H. Schmidt, Nonlinear inversion forocean-bottom properties, Journal of the Acoustical Society of America 92(5),2770-2783, 1992.
  • M. Strasberg, "Propeller Cavitation Noise After 35 Years of Study," ASMESymposium on Noise and Fluids Engineering, Atlanta, Georgia, November 27 ?December 2, 1977.
  • M. Sen and P. L. Stoffa, Global Optimization Methods in GeophysicalInversion (Elsevier, Amsterdam, 1995).
  • M. J. Lighthill, On sound generated aerodynamically, Proceedings of theRoyal Society of London. Series A, Mathematical and Physical Sciences211(1107), 564-587, 1952.
  • K. O. Holden, O. Fagejord, and R. Frostad, “Early design-stage approach toreducing hull surface forces due to propeller cavitation”, SNAME 14, 30, 1980.
  • K. Lee, J. Lee, D. Kim, K. Kim, W. Seong, and J. Lee, Propeller sheetcavitation noise source modeling, Journal of Sound and Vibration 333, 1356-1368,2013.
  • K. Kim, W. Seong, and K. Lee, Range-dependent geoacoustic inversion ofvertical line array data using matched beam processing, Journal of the AcousticalSociety of America 125(2), 735-745, 2009.
  • J. Lee, J. Han, H. Park, and J. Seo, Improvements of model-test method forcavitation-induced pressure fluctuation in marine propeller, Journal ofHydrodynamics 25(4), 599-605, 2013.
  • J. Lee, J. Han, H. Park, and J. Seo, Application of signal processingtechniques to the detection of tip vortex cavitation noise in marine propeller,Journal of Hydrodynamics 25(3), 440-449, 2013.
  • J. Lee and J. Seo, Application of spectral kurtosis to the detection of tipvortex cavitation noise in marine propeller, Mechanical Systems and SignalProcessing 40, 222-236, 2013.
  • J. L. Beveridge, The radial distribution of propeller thrust from model wakemeasurements, DTIC Technical Report, Defense Technical Information Center,Accession No. AD812331, David Taylor Model Basin, Washington D.C, 1958.
  • J. Choi and S. L. Ceccio, Dynamics and noise emission of vortex cavitationbubbles, Journal of Fluid Mechanics 575, 1-26, 2007.
  • J. Carlton, Marine propellers and propulsion (second edition)(Butterworth-Heinemann, Oxford, 1994).
  • J. Breslin and S. Tsakonas, Marine propeller pressure field due to loadingand thickness effects, Transactions of SNAME 67, 386?422, 1959.
  • J. Breslin and P. Andersen, Hydrodynamics of ship propellers (CambridgeUniversity Press, NY, 1994).
  • ITTC. The Specialist committee on cavitation induced pressures[C]. 23rdInternational Towing Tank Conference. Venice, France, 2002.
  • IMO Report of Marine Environment Protection Committee 63 / 23, 2012“Noise from commercial shipping and its adverse impacts on marine life”.
  • IMO Report of Marine Environment Protection Committee 62 / 19, 2011“Noise from commercial shipping and its adverse impact on marine life”.
  • H. Seol, B. Jung, J. Suh, and S. Lee, “Prediction of non-cavitatingunderwater propeller noise”, Journal of Sound and Vibration 257(1), 131-156,2002.
  • G. Bark and C. A. Johnsson, Prediction of Cavitation Noise from ModelExperiments in a Large Cavitation Tunnel. Noise source in Ship1: Propellers.(Nordforsk, 1981).
  • F. Salvatore, C. Testa, and L. Greco, “Coupled hydrodynamics-hydroacousticsBEM modeling of marine propellers operating in a wakefield”, Proceedings of the1st International Symposium on Marine Propulsors, Trondheim, Norway, 11-21,2009.
  • F. Farassat, S.L. Padula, and M. H. Dunn, Advanced turboprop noiseprediction based on recent theoretical results, Journal of Sound and Vibration 119,53-79, 1987.
  • F. Farassat, Acoustic radiation from rotating blades ? the Kirchhoff methodin aeroacoustics, Journal of Sound and Vibration 239, 785-800, 2001.
  • E. van Wijngaarden, “Prediction of Propeller-Induced Hull-PressureFluctuations”, PhD thesis, Delft University of Technology, 2012.
  • E. van Wijngaarden, J. Brouwer, and M. Zijlstra, “A spatial extrapolationtechnique for sparse measurements of propeller-induced hull-pressures using aninverse acoustic boundary element method”, Proc. of the Sixth International118Symposium on Cavitation, Wageningen, Netherlands, September, 2006.
  • D. Ross, Mechanics of underwater noise (Pergamon Press, New York, 1976).
  • D. Kim, K. Lee, and W. Seong, Non-cavitating propeller noise modeling andinversion, Journal of Sound and Vibration 333, 6424-6437, 2014.
  • D. Kim, K. Lee, J. Lee, and W. Seong, Localization of incipient propellercavitation in a tunnel using inversion method, Proc. of ASME 4th JointUS-European Fluid Engineering Division Summer meeting, Chicago, USA, 2014.
  • Cavitation ITTC Comittee, 1987, Final report and recommendations to the12118th ITTC. In: Proceedings of 18th ITTC, Kobe, Japen.
  • C. Testa, S. Ianniello, F. Salvatore, and M. Gennaretti, Numerical approachfor hydroacoustic analysis of marine propellers, Journal of ship research 52(1),57?70, 2008.
  • C. Park, H. Seol, K. Kim, and W. Seong, A study on propeller noiselocalization in a cavitation tunnel, Ocean Engineering 36, 754-762, 2009.
  • C. J. Jenkins, Optimizing propellers for noise, Advanced in UnderwaterTechnology, Ocean Science and Offshore Engineering, vol 15: Technologycommon to Aero and Marine Engineering, Society for underwater Technology,1988.119
  • A. Tolstoy, Matched field processing for underwater acoustics (WorldScientific Publishing, Washington, 1993).
  • A. B. Baggeroer, W. A. Kuperman, and H. Schmidt, Matched fieldprocessing: Source localization in correlated noise as an optimum parameterestimation problem, Journal of Acoustical Society of America 83(2), 571-587,1987.
  • A Study on The Improvement of Cavitation Inception Speed forNaval Propellers
    나양섭 충남대학교 박사 학위 논문 [2005]