Page 168 - 《应用声学》2020年第3期
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[31] Dhanak M R. Turbulent boundary layer on a circular Sun Hongxing, Zhu Xiqing. Study on discrete noise in-
cylinder: the low-wavenumber surface pressure spectrum duced by marine propeller[J]. Journal of Ship Mechanics,
due to a low-Mach-number flow[J]. Journal of Fluid Me- 2003, 7(4): 105–109.
chanics, 1988, 191: 443–464. [49] Hanson D B. Noise of counter-rotation propellers[J]. Jour-
[32] Dowling A P. Flow-acoustic interaction near a flexible nal of Aircraft, 1985, 22(7): 609–617.
wall[J]. Journal of Fluid Mechanics, 1983, 128: 181–198. [50] Parry A B. Theoretical prediction of counter-rotation pro-
[33] Phillips O M. The intensity of Aeolian tones[J]. Journal peller noise[D]. UK: University of Leeds, 1989.
of Fluid Mechanics, 1956, 1: 607–624. [51] 王顺杰, 程玉胜, 高鑫. 水下对转螺旋桨空化线谱频率预报与
[34] Ross D. Vortex-shedding sound of propellers: AD0435764[R]. 数值模拟 [J]. 兵工学报, 2013, 34(3): 310–317.
1964–03–16. Wang Shunjie, Cheng Yusheng, Gao Xin. Prediction
[35] Ross D. Mechanics of underwater noise[M]. Oxford: Perg- and numerical simulation of cavitation noise line-spectrum
amon Press, 1976. frequency induced by underwater counter-rotation pro-
[36] Kemp N H, Sears W R. Aerodynamic interference be- peller[J]. Acta Armamentarii, 2013, 34(3): 310–317.
tween moving blade rows[J]. Journal of the Aeronautical [52] Rayleigh L. On the pressure developed in a liquid during
Sciences, 1953, 20(9): 585–597. the collapse of a spherical cavity[J]. Philosophical Maga-
[37] Kemp N H, Sears W R. The unsteady forces due to viscous zine: Series 6, 1917, 34(200): 94–98.
wakes in turbomachines[J]. Journal of the Aeronautical [53] Plesset M S, Chapman R B. Collapse of an initially spher-
Sciences, 1955, 22(7): 478–483. ical vapour cavity in the neighbourhood of a solid bound-
[38] Sharland I J. Sources of noise in axial flow fans[J]. Journal ary[J]. Journal of Fluid Mechanics, 1971, 47(2): 283–290.
of Sound and Vibration, 1964, 1(3): 302–322. [54] Noltingk B E, Neppiras E A. Cavitation produced by ul-
[39] Lowson M V. Reduction of compressor noise radiation[J]. trasonics[J]. Proceedings of the Physical Society: Section
Journal of the Acoustical Society of America, 1968, 43(1): B, 1950, 63(9): 674–685.
37–50. [55] GilmoreI F R. The growth or collapse of a spherical bubble
[40] Hanson D B. Spectrum of rotor noise caused by inlet guide in a viscous compressible liquid[R]. California: California
vane wakes[J]. Journal of the Acoustical Society of Amer- Institute of Technology Report, No.26, 1952: 26–42.
ica, 1974, 55(6): 1247–1251. [56] Benjamin T B, Ellis A T. The collapse of cavitation bub-
[41] Abrahamsson M, Johansson M. Analysis of pressure bles and the pressures thereby produced against solid
pulses generated in a waterjet propulsion unit[D]. Sweden: boundaries[J]. Philosophical Transactions of the Royal
Chalmers University of Technology, 1998. Society A (Mathematical, Physical and Engineering Sci-
[42] Kaji S, Okazaki T. Generation of sound by rotor-stator in- ences), 1966, 260(1110): 221–240.
teraction[J]. Journal of Sound and Vibration, 1970, 13(3): [57] Zhang S G, Duncan J H, Chanine G L. The final stage
281–307. of the collapse of a cavitation bubble near a rigid wall[J].
[43] Mani R. Discrete frequency noise generation from an axial Journal of Fluid Mechanics, 1993, 257: 147–181.
flow fan blade row[J]. Journal of Basic Engineering, 1970, [58] Szsmrczak W G, Rogers J C W, Solomon J M, et al. A nu-
92(1): 37–43. merical algorithm for hydrodynamic free boundary prob-
[44] Lipstein N J, Mani R. Experimental investigation of lems[J]. Journal of Computational Physics, 1993, 106(2):
discrete frequency noise generated by unsteady blade 319–336.
forces[J]. Journal of Basic Engineering, 1970, 92(1): [59] Bailly C, Juve D. Numerical solution of acoustic propaga-
155–164. tion problems using linearized Euler equations[J]. AIAA
[45] 曾赛, 杜选民, 范威. 水下对转螺旋桨无空化线谱噪声数值模 Journal, 2000, 38(1): 22–29.
拟研究 [J]. 兵工学报, 2015, 36(5): 1053–1060. [60] Lundgrer T S, Mansour N N. Vortexing bubbles[J]. Jour-
Zeng Sai, Du Xuanmin, Fan Wei. Numerical simulation nal of Fluid Mechanics, 1991, 224: 177–196.
and analysis of non-cavitation noise line-spectrum fre- [61] 曾赛, 杜选民, 范威, 等. 对转桨和单桨空泡水筒噪声测量对
quency of underwater counter-rotation propeller[J]. Acta 比试验研究 [J]. 船舶力学, 2018, 22(7): 896–907.
Armamentarii, 2015, 36(5): 1053–1060. Zeng Sai, Du Xuanmin, Fan Wei, et al. Measurement and
[46] 朱锡清, 吴武生. 螺旋桨负荷噪声研究 [J]. 声学学报, 1999, comparison analysis of the noise for counter-rotation pro-
24(3): 259–268. peller and single propeller tested in cavitation tunnel[J].
Zhu Xiqing, Wu Wusheng. Prediction of marine propeller Journal of Ship Mechanics, 2018, 22(7): 896–907.
loading noise[J]. Acta Acustica, 1999, 24(3): 259–268. [62] 戚定满, 鲁传敬, 何友声. 空泡溃灭及空化噪声研究综述 [J].
[47] 朱锡清, 唐登海, 孙红星, 等. 船舶螺旋桨低频噪声研究 [J]. 船 上海力学, 1999, 20(1): 1–9.
舶力学, 2000, 4(1): 50–55. Qi Dingman, Lu Chuanjing, He Yousheng. A review of
Zhu Xiqing, Tang Denghai, Sun Hongxing, et al. Study bubble collapse and cavitation noise[J]. Chinese Quarterly
of low frequency noise induced by propeller[J]. Journal of of Mechanics, 1999, 20(1): 1–9.
Ship Mechanics, 2000, 4(1): 50–55. [63] Vogel A, Lauterborn W. Acoustic transient generation
[48] 孙红星, 朱锡清. 螺旋桨离散谱噪声计算研究 [J]. 船舶力学, by laser-produced cavitation bubbles near solid bound-
2003, 7(4): 105–109. aries[J]. Journal of the Acoustical Society of America,