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References

Published online by Cambridge University Press:  05 October 2012

Christopher K. W. Tam
Affiliation:
Florida State University
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Computational Aeroacoustics
A Wave Number Approach
, pp. 471 - 476
Publisher: Cambridge University Press
Print publication year: 2012

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References

Abramowitz, M.Stegun, I.A, I.A. 1964 Handbook of Mathematical Functions with Formulas, Graphs and Mathematical TablesNational Bureau of StandardsDover Publications, IncNew YorkGoogle Scholar
Arbey, H.Bataille, J. 1983 Noise generated by airfoil profiles placed in a uniform laminar flowJournal of Fluid Mechanics 134 33CrossRefGoogle Scholar
Bayliss, A.Turkel, E. 1980 Radiation Boundary Conditions for Wave-Like EquationsCommunications on Pure and Applied Mathematics 33 707CrossRefGoogle Scholar
Bayliss, A.Turkel, E. 1982 Far Field Boundary Conditions for Compressible FlowsJournal of Computational Physics 48 182CrossRefGoogle Scholar
Berenger, J.P 1994 A perfectly matched layer for the absorption of electromagnetic wavesJournal of Computational Physics 114 185CrossRefGoogle Scholar
Berenger, J.P. 1996 Three dimensional perfectly matched layer for the absorption of electromagnetic wavesJournal of Computational physics 127 363CrossRefGoogle Scholar
Berger, M.J.Colella, P. 1989 Local Adaptive Mesh Refinement for Shock HydrodynamicsJournal of Computational Physics 82 64CrossRefGoogle Scholar
Bradury, L. J. S. 1965 The structure of a self-preserving turbulent plane jetJournal of Fluid Mechanics 23 31CrossRefGoogle Scholar
Chandrasekhar, S. 1989 Adjoint differential systems in the theory of hydrodynamic stabilitySelected Papers of S. Chandrasekhar221University of Chicago PressGoogle Scholar
Cho, Y. C. 1980 Reciprocity principle in duct acousticsJournal of the Acoustical Society of America 67 1421CrossRefGoogle Scholar
Chong, T. P.Joseph, P. 2009 2009
Dahl, Milo D. 2000
Desquesnes, G.Terracol, M.Sagaut, P. 2007 Numerical investigation of the tone noise mechanism over laminar airfoilsJouranl of Fluid Mechanics 591 155Google Scholar
Dong, T.Z. 1997 On Boundary Conditions for Acoustic Computations in Non-uniform Mean FlowsJournal of Computational Acoustics 5 297CrossRefGoogle Scholar
Dowling, A. P. 1983 Flow-acoustic interaction near a flexible wallJournal of Fluid Mechanics 128 181CrossRefGoogle Scholar
Eckhaus, W. 1965 Studies in Nonlinear Stability TheorySpringer.CrossRefGoogle Scholar
Erdelyi, A.Magnus, W.Oberhettinger, F.Tricomi, F. G. 1954 Tables of Integral TransformsMcGraw HillGoogle Scholar
Eversman, W. 1991 Theoretical models for duct acoustic propagation and radiationHubbard, H.H.Aeroacoustics of Flight Vehicles: Theory and PracticeNASA101Google Scholar
Falle, S.A.E.G.Giddings, J. 1993 Body Capturing using Adaptive Cartesian GridsNumerical Methods in Fluid Dynamics 4 337Google Scholar
Ffowcs Williams, J.EHawkings, D.L 1969 Sound Generation by Turbulence and Surface in Arbitrary MotionPhilosophical Transactions of the Royal Society of London 264A 321CrossRefGoogle Scholar
Giles, M.B. 1990 Nonreflecting Boundary Conditions for Euler Equation CalculationsAIAA Journal 28 2050CrossRefGoogle Scholar
Givoli, D. 1991 Non-Reflecting Boundary ConditionsJournal of Computational Physics 94 1CrossRefGoogle Scholar
Hanjalic, K.Launder, B.E. 1972 A Reynolds stress model of turbulence and its applications to thin shear flowsJournal of Fluid Mechanics 52 609CrossRefGoogle Scholar
Hanjalic, K.Launder, B.E. 1976 Contribution towards a Reynolds stress closure for low Reynolds number turbulenceJournal of Fluid Mechanics 74 593CrossRefGoogle Scholar
Henderson, B.S. 2004 Problem 2: Sound Generation by Flow over a CavityFourth Computational Aeroacoustics (CAA) Workshop on Benchmark ProblemsNASA71Google Scholar
Hill, D. C. 1995 Adjoint systems and their role in the receptivity problem for boundary layersJournal of Fluid Mechanics 292 183CrossRefGoogle Scholar
Hixon, R.Shih, S.H.Mankbadi, R.R. 1995 Evaluation of Boundary Conditions for Computational AeroacousticsAIAA Journal 33 2006CrossRefGoogle Scholar
Howe, M. S. 1975 The generation of sound by aerodynamics sources in an inhomongeneous steady flowJournal of Fluid Mechanics 67 597CrossRefGoogle Scholar
Howe, M. S. 1981 The displacement thickness theory of trailing edge noiseJournal of Sound and Vibration 75 239CrossRefGoogle Scholar
Hu, F.Q.Hussaini, M.Y.Manthey, J.L. 1996 Low-Dissipation and Low-Dispersion Runge-Kutta Schemes for Computational AcousticsJournal of Computational Physics 124 177CrossRefGoogle Scholar
Hu, F.Q. 1996 On Absorbing Boundary Conditions of Linearized Euler Equations by a Perfectly Matched LayerJournal of Computational Physics 129 201CrossRefGoogle Scholar
Hu, F.Q. 2001 A Stable Perfectly Matched Layer for Linearized Euler Equations in Unsplit Physical VariablesJournal of Computational Physics 173 455CrossRefGoogle Scholar
Hu, F.Q. 2004 Absorbing Boundary Conditions. International Journal of Computational Fluid Dynamics 18 513CrossRef
Hu, F.Q. 2005 A Perfectly Matched Layer Absorbing Boundary Condition for Linearized Euler Equations with a Non-uniform Mean FlowJournal of Computational Physics 208 469CrossRefGoogle Scholar
Kibens, V. 1968
Kingan, M. J.Pearse, J. R. 2009 Laminar boundary layer instability noise produced by an aerofoilJournal of Sound and Vibration 322 808CrossRefGoogle Scholar
Kurbatskii, K.A.Tam, C.K.W. 1997 Cartesian Boundary Treatment of Curved Walls for High-Order Computational Aeroacoustics SchemesAIAA Journal 35 133CrossRefGoogle Scholar
Lau, J.C. 1981 Effects of exit Mach number and temperature on mean flow and turbulence characteristics in round jetsJournal of Fluid Mechanics 105 193CrossRefGoogle Scholar
Launder, B.E.Spalding, D.B. 1974 The numerical computation of turbulent flowsComputer Methods in Applied Mechanics and Engineering 3 269CrossRefGoogle Scholar
Launder, B.E.Reece, G.J.Rodi, W. 1975 Progress in the development of a Reynolds stress turbulence closureJournal of Fluid Mechanics 68 537CrossRefGoogle Scholar
Lele, S.K. 1992 Compact Finite Difference Schemes with Spectral-Like ResolutionJournal of Computational Physics 103 16CrossRefGoogle Scholar
Lele, S.K. 1997
Li, Y. 1997 Wave Number-extended High-order Upwind-biased Finite Difference Schemes for Convective Scalar TransportJournal of Computational Physics 133 235CrossRefGoogle Scholar
Lockard, D.P.Brentner, K.S.Atkins, H.L. 1995 High Accuracy Algorithms for Computational AeroacousticsAIAA Journal 33 246CrossRefGoogle Scholar
Lyrintzis, A.S. 2003 Integral acoustics methods: from the (CFD) near-field to the (acoustic) far-fieldInternational Journal of Aeroacoustics 2 95CrossRefGoogle Scholar
Maestrello, L. 1973
Magnus, W.Oberhettinger, F. 1949 Formulas and Theorems for the Functions of Mathematical PhysicsChelseaPublishing CompanyGoogle Scholar
McAlpine, A.Wright, M.C.M.Batard, H.Thezelais, S. 2003 2003
Melling, T.H. 1993 The acoustic impedance of perforate at medium and high sound pressure levelsJournal of Sound and Vibration 29 1CrossRefGoogle Scholar
Menter, F.R. 1994 Two-equation eddy-viscosity turbulence models for engineering applicationsAIAA Journal 32 1598CrossRefGoogle Scholar
Menter, F.R. 1994
Menter, F.R. 1997 Eddy viscosity transport equations and their relation to the − ε modelJournal of Fluids Engineering 119 876Google Scholar
Mickens, R.E. 1990 nd
Morfey, C.L. 1971 Acoustic energy in non-uniform flowsJournal of Sound and Vibration 14 159CrossRefGoogle Scholar
Motsinger, R.E.Kraft, R.E. 1991 Design and performance of duct acoustic treatmentHubbard, H.H.Aeroacoustics of Flight Vehicles: Theory and PracticeNASA165Google Scholar
Myers, M.K. 1980 On the Acoustic Boundary Condition in the Presence of FlowJournal of Sound and Vibration 71 429CrossRefGoogle Scholar
Nash, E.C.Lowson, M.V.McAlpine, A. 1999 Boundary-layer instability noise on airfoilsJournal of Fluid Mechanics 382 27CrossRefGoogle Scholar
Norum, T.D. 1983 Screech suppression in supersonic jetsAIAA Journal 21 235CrossRefGoogle Scholar
Norum, T.D.Brown, M.C. 1993
Paterson, R. W.Vogt, P. G.Fink, M. R.Munch, C. L. 1973 Vortex noise of isolated AirfoilsJournal of Aircrafts 10 296CrossRefGoogle Scholar
Phillips, O. M. 1955 The irrotational motion outside a free turbulent boundaryProceedings Cambridge Philosophical Society 51 220CrossRefGoogle Scholar
Ponton, M.K.Seiner, J.M. 1992 The effects of nozzle exit lip thickness on plume resonanceJournal of Sound and Vibration 154 531CrossRefGoogle Scholar
Pope, S.B. 1978 An explanation of the turbulent round-jet/plane-jet anomalyAIAA Journal 16 279CrossRefGoogle Scholar
Powell, A. 1953 On the mechanism of choked jet noiseProceedings of the Physical Society, London 66 1039CrossRefGoogle Scholar
Regan, B.Eaton, J 1999 Modelling the influence of acoustic liner non-uniformities on duct modesJournal of Sound and Vibration 219 859CrossRefGoogle Scholar
Roberts, P. H. 1960 Characteristic value problems posed by differential equations arising in hydrodynamics and hydromagneticsJournal of Mathematical Analysis and Applications 1 193CrossRefGoogle Scholar
Roe, P.L. 1992
Sanberg, R. D.Sandham, N. D.Joseph, P. F. 2007 Direct numerical simulations of trialing-edge noise generated by boundary-layer instabilitiesJournal of Sound and Vibration 304 677CrossRefGoogle Scholar
Saric, W. S.Nayfeh, A. H. 1975 Nonparallel stability of boundary layer flowsPhysics of Fluids 18 945CrossRefGoogle Scholar
Sarkar, S.Lakshmanan, B. 1991 Application of a Reynolds stress turbulence model to compressible shear layerAIAA Journal 29 743CrossRefGoogle Scholar
Shen, H.Tam, C.K.W. 1998 Numerical Simulation of the Generation of Axisymmetric Mode Jet Screech TonesAIAA Journal 36 1801CrossRefGoogle Scholar
Sherer, S. E. 2004
Spalart, P.R.Allmaras, S.R. 1994 A one-equation turbulence model for aerodynamic flowsLa Recherche Aerospatiale 1 5Google Scholar
Stewart, R. W. 1956 Irrotational motion associated with free turbulent flowsJournal of Fluid Mechanics 51 593CrossRefGoogle Scholar
Tam, C.K.W. 1974 Discrete tones of isolated airfoilsJournal of the Acoustical Society of America 55 1173CrossRefGoogle Scholar
Tam, C.K.W. 1995 Computational Aeroacoustics: Issues and MethodsAIAA Journal 33 1788CrossRefGoogle Scholar
Tam, C.K.W. 1998 Advances in Numerical Boundary Conditions for Computational AeroacousticsJournal of Computational Acoustics 6 377CrossRefGoogle Scholar
Tam, C.K.W. 2004 Computational Aeroacoustics: An Overview of Computational Challenges and ApplicationsInternational Journal of Computational Fluid Dynamics 18 547CrossRefGoogle Scholar
Tam, C.K.W.Block, P.J.W. 1978 On the Tones and Pressure Oscillations Induced by Flows over Rectangular CavitiesJournal of Fluid Mechanics 89 373CrossRefGoogle Scholar
Tam, C.K.W.Auriault, L. 1996 Time-Domain Impedance Boundary Conditions for Computational AeroacousticsAIAA Journal 34 917CrossRefGoogle Scholar
Tam, C.K.W.Dong, Z. 1994 Wall Boundary Conditions for High-Order Finite Difference Schemes in Computational AeroacousticsTheoretical and Computational Fluid Dynamics 6 303CrossRefGoogle Scholar
Tam, C.K.W.Dong, Z. 1996 Radiation and Outflow Boundary Conditions for Direct Computation of Acoustic and Flow Disturbances in Nonuniform Mean FlowJournal of Computational Acoustics 4 175CrossRefGoogle Scholar
Tam, C. K. W.Golebiowski, M.Seiner, J. M. 1996
Tam, C.K.W.Shen, H. 1993
Tam, C.K.W.Webb, J.C. 1993 Dispersion-Relation-Preserving Finite difference Schemes for Computational AcousticsJournal of Computational Physics 107 262CrossRefGoogle Scholar
Tam, C.K.W.Webb, J.C.Dong, Z. 1993 A Study of the Short Wave Components in Computational AcousticsJournal Computational Acoustics 1 1CrossRefGoogle Scholar
Tam, C. K. W.Auriault, L. 1998 Mean flow refraction effects on sound radiated from localized sources in a jetJournal of Fluid Mechanics 370 149CrossRefGoogle Scholar
Tam, C.K.W.Auriault, LCambuli, F. 1998 Perfectly Matched Layer as an Absorbing Boundary Condition for the Linearized Euler Equations in Open and Ducted DomainsJournal Computational Physics 144 213CrossRefGoogle Scholar
Tam, C.K.W.Fang, J.Kurbatskii, K.A. 1998 Nonhomogeneous Radiation and Outflow Boundary Conditions Simulating Incoming Acoustic and Vorticity Waves for Exterior Computational Aeroacoustic ProblemsInternational Journal for Numerical Methods in Fluids 26 11073.0.CO;2-N>CrossRefGoogle Scholar
Tam, C.K.W.Kurbatskii, K.A. 2000 A Wave number Based Extrapolation and Interpolation Method for Use in Conjunction with High-Order Finite Difference SchemesJournal of Computational Physics 157 588CrossRefGoogle Scholar
Tam, C.K.W.Kurbatskii, K.A. 2000 Microfluid dynamics and acoustics of resonant linersAIAA Journal 38 1331CrossRefGoogle Scholar
Tam, C.K.W.Kurbatskii, K.A.Ahuja, K.K.GaetaJr., R.J. 2001 Journal of Sound and Vibration 245 545CrossRef
Tam, C.K.W.Pastouchenko, N.N.Auriault, L. 2001 Effects of forward flight on jet mixing noise from fine-scale turbulenceAIAA Journal 39 1261CrossRefGoogle Scholar
Tam, C.K.W.Ganesan, A. 2004 Modified − ε turbulence model for calculating hot jet mean flows and noiseAIAA Journal 42 26CrossRefGoogle Scholar
Tam, C.K.W.Ju, H. 2009 Finite difference computation of acoustic scattering by small surface inhomogeneities and discontinuitiesJournal of Computational Physics 228 5917CrossRefGoogle Scholar
Tam, C.K.W.Pastouchenko, N.N.Viswanathan, K. 2010
Tam, C.K.W.Vishwanathan, K.Pastouchenko, N.N. 2010
Tam, C.K.W.Ju, H. 2012 Airfoil tones at moderate Reynolds numberJournal of Fluid Mechanics 690 536CrossRefGoogle Scholar
Tam, C. K. W.Viswanathan, K.Ahuja, K. K.Panda, J. 2008 The sources of jet noise: experimental evidenceJournal of Fluid Mechanics 615 253CrossRefGoogle Scholar
Tam, C.K.W.Ju, H.Chien, E.W. 2008 Scattering Acoustic Duct Modes by Axial Liner SplicesJournal of Sound and Vibration 310 1014CrossRefGoogle Scholar
Tester, B. J. 1973 The Propagation and Attenuation of Sound in Lined Ducts Containing Uniform or Plug FlowJournal of Sound and Vibration 28 151CrossRefGoogle Scholar
Tester, B.J.Powles, C.J.Baker, N.J.Kempton, A.J. 2006 Scattering of sound by liner splices: a Kirchhoff model with numerical verificationAIAA Journal 44 2009CrossRefGoogle Scholar
Thies, A.T.Tam, C.K.W. 1996 Computation of turbulent axisymmetric and nonaxisymmetric jet flows using the − ε modelAIAA Journal 34 309CrossRefGoogle Scholar
Thomas, J.P.Roe, P.L. 1993 93
Thompson, K.W. 1989 Time Dependent Boundary Conditions for Hyperbolic SystemsJournal of Computational Physics 68 1CrossRefGoogle Scholar
Thompson, K.W. 1989 Time Dependent Boundary Conditions for Hyperbolic Systems, IIJournal of Computational Physics 89 439CrossRefGoogle Scholar
Trefethen, L.N. 1981 Group Velocity in Finite Difference SchemesSiam Review 24 113CrossRefGoogle Scholar
Tyler, J. M.Sofrin, T. G. 1962 Axial flow compressor noise studiesSAE Transaction 70 309Google Scholar
Vichnevetsky, R.Bowles, J.B. 1982 Fourier Analysis of Numerical Approximations of Hyperbolic EquationsSIAM, PhiladelphiaCrossRefGoogle Scholar
White, F.M. 1991 Viscous Fluid FlowMcGraw HillGoogle Scholar
Whitham, G.B. 1974 Linear and Nonlinear WavesWiley-InterscienceGoogle Scholar
Wilcox, D.C. 1998 Turbulence Modeling for CFDndDCW Industries IncGoogle Scholar
Zhuang, M.Chen, R 1998 Optimized Upwind Dispersion-Relation-Preserving Finite Difference Scheme for Computational AeroacousticsAIAA Journal 36 2146CrossRefGoogle Scholar
Zhuang, M.Chen, R. 2002 Applications of High-Order Optimized Upwind Schemes for Computational AeroacousticsAIAA Journal 40 443CrossRefGoogle Scholar
Zingg, D.W.Lomax, H.Jurgens, H. 1993
Zingg, D.W. 2000 Comparison of High-Accuracy Finite Difference Methods for Linear Wave PropagationSIAM Journal of Scientific Computing 22 476CrossRefGoogle Scholar

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  • References
  • Christopher K. W. Tam, Florida State University
  • Book: Computational Aeroacoustics
  • Online publication: 05 October 2012
  • Chapter DOI: https://doi.org/10.1017/CBO9780511802065.024
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  • References
  • Christopher K. W. Tam, Florida State University
  • Book: Computational Aeroacoustics
  • Online publication: 05 October 2012
  • Chapter DOI: https://doi.org/10.1017/CBO9780511802065.024
Available formats
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Save book to Google Drive

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  • References
  • Christopher K. W. Tam, Florida State University
  • Book: Computational Aeroacoustics
  • Online publication: 05 October 2012
  • Chapter DOI: https://doi.org/10.1017/CBO9780511802065.024
Available formats
×