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수중구조물 주위의 난류흐름에 의한 유동소음 수치해석기법 개발

최원석 2020년
논문상세정보
' 수중구조물 주위의 난류흐름에 의한 유동소음 수치해석기법 개발' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • 벽면변동압력
  • 난류유동 유기 진동소음
  • 뒷날소음
  • 에너지흐름해석법
  • 유체동역학적 진동소음
  • 전산유체역학
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
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' 수중구조물 주위의 난류흐름에 의한 유동소음 수치해석기법 개발' 의 참고문헌

  • 함정의 기계류진동에 의한 수중방사소음해석을 위한 파워흐름해석법의 확장연구
    한주범 서울대학교 박사학위논문 [2014]
  • 진동파워흐름해석을 위한 난류흐름에 의한 입력파워 추정 및 적용
    임구섭 서울대학교 석사학위논문 [2006]
  • 산란을 고려한 프로펠러 소음과 변동압력의 시간영역 해석 및 실선 적용 연구
    김종도 서울대학교 박사학위논문 [2012]
  • Æ olian tones
    29 ( 172 ) , pp.433-444
  • Wall-pressure spectral model including the adverse pressure gradient effects
    50 ( 10 ) , 2168-2179 [2012]
  • Vortex noise from rotating cylindrical rods
    7 ( 3 ) , pp.190-198
  • Vibrations of flat plates excited by low Mach number turbulent boundary layers
    Vol . 5 , pp . 3257-3264 ) .
  • Two and Three-dimensional Simulation of Sound Generated by Flow Around a Circular Cylinder
    [2009]
  • Turbulent-Induced Noise around a Circular Cylinder Using Permeable FW-H Method
  • Turbulent-Flow-Excited Vibration of a Simply Supported , Rectangular Flat Plate
    45 ( 1 ) , pp.177-192 [1969]
  • Turbulent boundary-layer wall-pressure fluctuations on smooth and rough walls
    44 ( 4 ) , pp.637-660 [1970]
  • Turbulent Flow-Induced Self Noise and Radiated Noise in Naval Systems-An Industry Point of View . In Flinovia-Flow Induced Noise and Vibration Issues and Aspects
    pp . 211-225 [2015]
  • Turbulence-induced noise of a submerged cylinder using a permeable FW-H method .
    8 ( 3 ) , pp.235-242 . [2016]
  • Trailing edge noise theory for rotating blades in uniform flow
    469 ( 2157 ) , p.20130065 [2013]
  • Trailing edge noise prediction from measured surface pressures
    78 ( 1 ) , pp.69-117 . [1981]
  • Towed body measurements of flow noise from a turbulent boundary layer under sea conditions
    135 ( 2 ) , pp.637-645 [2014]
  • The character of the turbulent wall pressure spectrum at subconvective wavenumbers and a suggested comprehensive model
    112 ( 1 ) , pp.125-147 [1987]
  • The Uses and Abuses of the Acoustic Analogy in Helicopter Rotor Noise Prediction
    pp . 29-36 [1988]
  • The Future of Russia ’ s Strategic Nuclear Forces Norberg , C. , 2003 . Fluctuating Lift on a Circular Cylinder : Review and New Measurement
    17 ( 1 ) , pp.57-96 . [1995]
  • Surface and volume sound from boundary layers
    37 ( 3 ) , pp.516-522 [1965]
  • Supersonic Quadrupole Noise Theory for Highspeed Helicopter Rotors
    218 ( 3 ) , pp.481-500 . [1998]
  • Study on the analysis of model propeller tip vortex cavitation inception .
    37 ( 6 ) , pp.387-395 [2018]
  • Study on noise prediction of non-cavitating underwater propeller with hull-appendages effect .
    38 ( 3 ) , pp.247-255 . [2019]
  • Strategies for turbulence modelling and simulations
    21 ( 3 ) , pp.252-263 [2000]
  • Spectral features of wall pressure fluctuations beneath turbulent boundary layers
    3 ( 10 ) , pp.2410-2420 [1991]
  • Sound generation by turbulence and surfaces in arbitrary motion
    264 ( 1151 ) , pp.321-342 [1969]
  • Sound generation by a two-dimensionalCircularCylinder in a uniform flow
    471 , pp.285-314 [2002]
  • Sound from Turbulent Boundary Layer Excited Panels
    49 ( 3B ) , pp.878-889 [1971]
  • Sound and structural vibration : radiation , transmission and response
    [2007]
  • Ship underwater noise assessment by the acoustic analogy , part I : nonlinear analysis of a marine propeller in a uniform flow
    [2014]
  • Resolution and structure of the wall pressure field beneath a turbulent boundary layer
    22 ( 1 ) , pp.81- 94. [1965]
  • Resistance and self-propulsion simulations for the DARPA Suboff submarine by using RANS method
    [2018]
  • Recommended procedures and guidelines : practical guidelines for shipCFD Applications
    [2014]
  • R. D,1990 , Flow-induced vibration , 2nd ed.
  • Quadrupole Source in Prediction of Noise of Rotating Blades-A New Source Description
    [1987]
  • Propagation of vibrational energy in absorbing structures
    23 ( 2 ) , pp.115- 119. [1977]
  • Principles of underwater sound for engineers
    [1967]
  • Prediction of wall pressure spectrum using a RANSCalculation
    [2005]
  • Prediction of flow-induced structural vibration and sound radiation using energy flow analysis
    [1999]
  • Power flow boundary element analysis for multi-domain problems in vibrational built-up structures
    [2011]
  • OpenFOAM : Open source CFD in research and industry
    [2009]
  • On the vortex sound from rotating rods
    14 , p.561 . [1944]
  • On the structure and resolution of wall-pressure fluctuations associated with turbulent boundary-layer flow
    [1983]
  • On the Evaluation of Axisymmetric Forebody Shapes for Delaying Laminar-Turbulent Transition
    Part 1 . Background and Analysis of the Problem ( No . DTNSRDC-77-0074 ) [1977]
  • On sound generated aerodynamically I
    211 ( 1107 ) , pp.564-587 [1952]
  • On Sound Generated Aerodynamically , I : General Theory
    [1952]
  • Numerical simulation of transitional flow on a wind turbine airfoil with RANS-based transition model
    18 ( 9 ) , pp.879-898 . [2017]
  • Numerical implementation , validation , and marine applications of an energy finite element formulation
    43 ( 03 ) , pp.143-156 . [1999]
  • Noise production of ship 's propellers and waterjet installations at non-cavitating conditions . Proceedings of the 34th WEGEMT School Developments in the design of propulsors and propulsion systems , AULA , TUDelft , The Netherlands
    [2000]
  • Noise due to turbulent flow past a trailing edge
    47 ( 3 ) , pp.387-393 [1976]
  • Noise and vibration analysis programs based on energy flow methods , and Their Applications . Proceedings of the noise and vibration emerging methods ( NOVEM )
    [2012]
  • New frictional resistance law for smooth plates .
  • Multiscale and Multiresolution Ap-proaches in Turbulence .
    [2006]
  • Modeling the wavevector-frequency spectrum of turbulent boundary layer wall pressure
    70 ( 1 ) , pp.29-67 . [1980]
  • Mechanics of flow-induced sound and vibration , Volume 2 : Complex flow-structure interactions
    [2017]
  • Measured wavenumber : Frequency spectrum associated with acoustic and aerodynamic wall pressure fluctuations
    128 ( 4 ) , 1647-1655 [2010]
  • Investigation on the wall function implementation for the prediction of ship resistance
    5 ( 1 ) , pp.33-46 [2013]
  • Investigation and modelling of the turbulent wall pressure fluctuations on the bulbous bow of a ship
    [2016]
  • Howe, M.S., 1978. A review of the theory of trailing edge noise. Journal of sound and vibration, 61(3), pp.437-465. https://en.wikibooks.org/wiki/Engineering_Acoustics/Analogies_in_aeroacoustics
  • Helicopter rotor trailing edge noise
  • Gatski, T.B. and Rumsey, C., 2004. Langley Research Center Workshop: CFD validation of synthetic jets and turbulent separation control.
    [2004]
  • Fuselage excitation during cruise flight conditions : from flight test to numerical prediction . FLINOVIA-II
    pp . 309-324 [2017]
  • Fast and accurate analytical modeling of broadband noise for a low-speed fan
    143 ( 5 ) , pp.3103-3113 [2018]
  • Experimental investigation of noise generated by submerged circular cylinder .
    65 ( 4 ) , pp.288-294 . [2017]
  • Estimation of turbulent boundary layer induced noise using energy flow analysis for ship hull designs
    [2019]
  • Estimating turbulent-boundary-layer wallpressure spectra from CFD RANS solutions
    23 ( 6 ) , pp.920-937 . [2007]
  • Energy flow models for underwater radiation noise prediction in medium-to-high-frequency ranges .
    230 ( 2 ) , pp.404-416 . [2016]
  • Energy flow boundary element method for vibration analysis of one and two dimension structures
    [2008]
  • Empirical spectral model of surface pressure fluctuations
    42 ( 9 ) , pp.1788-1794 [2004]
  • Discussion about different methods for introducing the turbulent boundary layer excitation in vibroacoustic modelsIn Flinovia-Flow Induced Noise and Vibration Issues and Aspects
    pp . 249-278 [2015]
  • Development of power flow finite element method for medium-tohigh frequency vibration analysis of built-up structures with multi-dimensional elements
    [2005]
  • Development of PFFEM based vibroacoustic prediction software“ PFADS ” . Proceedings of the noise and vibration emerging methods
    [2000]
  • Derivation of Formulations 1 and 1A of Farassat .
    [2007]
  • Computational aeroacoustics : progress on nonlinear problems of sound generation
    40 ( 6 ) , pp.345-416 [2004]
  • Computational Prediction of FlowGenerated Sound
    [2006]
  • Computation of wall pressure spectra from steady flow data for noise prediction
    48 ( 9 ) , pp.1997-2007 . [2010]
  • Comparison of semi-empirical models for turbulent boundary layer wall pressure spectra . Journal of Sound and Vibration
    319 ( 1-2 ) , pp.199-217 [2009]
  • Cold War submarines : the design and construction of US and Soviet submarines
    [2004]
  • Broadband trailing edge noise predictions in the time domain . Journal of Sound and Vibration
    271 ( 1-2 ) , pp.159-176 . [2004]
  • Boundary-layer theory
    [2016]
  • Back-scattering correction and further extensions of Amiet 's trailing-edge noise model . Part 1 : theory
    286 ( 3 ) , pp.477-506 . [2005]
  • Attenuation of turbulent pressure fluctuations through an elastomeric coating
    90 ( 4 ) , pp.2286-2286 [1991]
  • Ansys fluent
  • An efficient and robust method for computing quadrupole noise
    [1997]
  • An Efficient and Robust Method for Predicting Helicopter Rotor High-Speed Impulsive Noise
    [1996]
  • Aeolian tones associated with resonant vibration .
    13 ( 4 ) , pp.465-483 . [1970]
  • Acoustics of fluid-structure interactions
    [1998]
  • A new time domain formulation for broadband noise predictions
    1 ( 3 ) , pp.207-240 . [2002]
  • A new boundary integral formulation for the prediction of sound radiation
    202 ( 4 ) , pp . 491-509 . [1997]
  • A model for the vibro-acoustic response of plates excited by complex flows
    246 ( 5 ) , pp.901-926 [2001]
  • 1984. Review of sound induced by vortex shedding from cylinders
    92 ( 4 ) , pp.455-470