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第 39 卷 第 3 期             曾赛等: 水下对转螺旋桨流致辐射噪声机理与预报方法                                          487


             辐射声场贡献的区分以及本征声特征量的提取等。                             [15] Ffowcs-Williams J E, Hall L H. Aerodynamic sound gen-
             需要紧跟当下水动力噪声预报最新进展,发展水下                                eration by turbulent flow in the vicinity of a scattering
                                                                   half plane[J]. Journal of Fluid Mechanics, 1970, 40(4):
             对转螺旋桨的流致辐射噪声预报理论和数值计算
                                                                   657–670.
             方法。                                                [16] Farassat F, Myers M K. Extension of Kirchhoff’s formula
                                                                   to radiation from moving surfaces[J]. Journal of Sound
                                                                   and Vibration, 1988, 123(3): 451–460.
                            参 考     文   献                       [17] Goldstein M. Unified approach to aerodynamic sound gen-
                                                                   eration in the presence of solid boundaries[J]. Journal of
                                                                   the Acoustical Society of America, 1974, 56(2): 497–509.
              [1] Whitfield C E, Mani R, Gliebe P R. High speed turbo-  [18] Goldstein M E. Aeroacoustics of turbulent shear flows[J].
                 prop  aeroacoustic  study(counter-rotation)[R].  U.S.A:  Annual Review of Fluid Mechanics, 1984, 16: 263–285.
                 NASA  Sti/recon  Technical  Report  N,  NASA-CR-  [19] 朱锡清, 吴武生. 水下高速航行体对转螺旋桨线谱噪声预报研
                 185242/127, 1990: 127–135.                        究 [J]. 声学学报, 1998, 23(2): 123–133.
              [2] Weisbrich A L, Godston J, Bradley E. Technology and  Zhu Xiqing, Wu Wusheng. Prediction of line-spectrum
                 benefits of aircraft counter rotation propellers[R]. U.S.A:  noise induced by high speed vehicle counter-rotation pro-
                 NASA Technical Memorandum, NASA-CR-168258, 1982:  pellers in water[J]. Acta Acustica, 1998, 23(2): 123–133.
                 1–40.                                          [20] Powell A. Aerodynamic noise and the plane boundary[J].
              [3] Wang M, Freund J B, Lele S K. Computational predic-  Journal of the Acoustical Society of America, 1960, 32(8):
                 tion of flow-generated sound[J]. Annual Review of Fluid  217–236.
                 Mechanics, 2006, 38(1): 483–512.               [21] Howe M S. The damping of sound by wall turbulent shear
              [4] Lynan E J H. The emission of sound by airscrews[R]. Re-  layers[J]. Journal of the Acoustical Society of America,
                 port No.624, Advisory Committee for Aeronautics, Wash-  1995, 98(3): 1723–1730.
                 ington D.C, March, 1919.                       [22] Shariff K, Wang M. A numerical experiment to determine
              [5] 曾赛, 杜选民, 范威. 水下对转桨无空化噪声调制理论分析与                   whether surface shear-stress fluctuations are a true sound
                 试验研究 [J]. 声学学报, 2017, 42(6): 641–651.             source[J]. Physics of Fluids, 2005, 17(10): 105–107.
                 Zeng Sai, Du Xuanmin, Fan Wei. Theoretical analysis  [23] Hu Z W, Morfey C L, Sandham N D. Sound radiation
                 and experimental research on non-cavitation noise mod-  in turbulent channel flows[J]. Journal of Fluid Mechanics,
                 ulation mechanism of underwater counter-rotation pro-  2003, 475: 269–302.
                 peller[J]. Acta Acustica, 2017, 42(6): 641–651.  [24] 俞孟萨, 吴有生, 庞业珍. 国外舰船水动力噪声研究进展概
              [6] Lighthill M J. On sound generated aerodynamic-general  述 [J]. 船舶力学, 2007, 11(1): 152–158.
                 theory[J]. Proceedings of the Royal Society of London,  Yu Mengsa, Wu Yousheng, Pang Yezhen. A review of
                 1952, 211: 564–587.                               progress for hydrodynamic noise of ships[J]. Journal of
              [7] 王春旭. 水下湍射流及壁面湍流噪声预报方法 [D]. 武汉: 华                 Ship Mechanics, 2007, 11(1): 152–158.
                 中科技大学, 2009.                                   [25] Corcos G M. The structure of the turbulent pressure field
              [8] Mankbandi R, Liu J T C. Sound generated aerodynam-  in boundary-layer flows[J]. Journal of Fluid Mechanics,
                 ically revisited: large-scale structures in a turbulent jet  1964, 18(3): 353–378.
                 as a source of sound[J]. Philosophical Transactions of the  [26] Corcos G M. The resolution of turbulent pressures at
                 Royal Society (Series A), 1984, 311(15/16): 183–217.  the wall of a boundary layer[J]. Journal of Sound and Vi-
              [9] 孙江龙. 绕潜艇三维厚边界层计算和二维自由面波动研                        bration, 1967, 6(1): 59–70.
                 究 [D]. 武汉: 华中科技大学, 2006.                       [27] Ffowcs-Williams J E. Boundary-layer pressures and
             [10] Curle N. The influence of solid boundaries upon aerody-  the Corcos model: a development to incorporate low-
                 namic sound[J]. Proceedings of the Royal Society of Lon-  wavenumber constraints[J]. Journal of Fluid Mechanics,
                 don (Series A), 1955, 231(1187): 505–514.         1982, 125: 9–25.
             [11] Lowson M V. The sound field for singularities in mo-  [28] Chase D M. The character of the turbulent wall pressure
                 tion[J]. Proceedings of the Royal Society (Series A), 1965,  spectrum at subconvective wavenumbers and a suggested
                 286(1407): 559–572.                               comprehensive model[J]. Journal of Sound and Vibration,
             [12] Lowson M V, Ollerhead J B. A theoretical study of he-  1987, 112(1): 125–147.
                 licopter rotor noise[J]. Journal of Sound and Vibration,  [29] Martin N C, Leehey P. Low wavenumber wall pressure
                 1969, 9(2): 197–222.                              measurements using a rectangular membrane as a spa-
             [13] Lowson M V. Theoretical analysis of compressor noise[J].  tial filter[J]. Journal of Sound and Vibration, 1977, 52(1):
                 Journal of the Acoustical Society of America, 1970, 47:  95–120.
                 371–385.                                       [30] Howe M S. The turbulent boundary-layer rough wall pres-
             [14] Ffowcs-Williams J E, Kempton A J. The noise from the  sure spectrum at acoustic and subconvective wave num-
                 large-scale structure of a jet[J]. Journal of Fluid Mechan-  bers[J]. Proceedings of Royal Society of London (Series
                 ics, 1978, 84(4): 673–694.                        A), 1988, 415(1848): 141–161.
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