[1] James  S, Warren D, Meggitt D. Navalmaritime security test and evaluation site (NMSTES)[C]∥Proc MTS/IEEE OCEANS. Washington D.C: 2005: 1841 -1843. [2] Johnson  E. Unmannedundersea vehicles and guided missile submarines: T echnological and Operational Synergies[D]. Occasional Paper No. 27, 2002. [3] ITTC. Cavitation committee report[C]∥Proc of 18th ITTC. Kobe, 1987: 183-186 . [4] 张永坤, 熊鹰. 船舶螺旋桨空泡噪声研究[J]. 舰船科学技术, 2008, 30 (4):54-60. ZHANG Yong-kun, XIONG Ying. A review of ship propeller cavitaion noise[J]. Sh ip Science and Technology, 2008, 30(4):54-60. (in Chinese) [5] Park  C, Seol H, Kim K, et al. A study on propeller noise source local ization in a cavitation tunnel[J]. Ocean Engineering, 2009, 36: 754-762. [6] Atlar M, Takinaci A C, Korkut E, et al. Cavitationtunnel tests for propel ler noise of a FRV and comparisons with full-scale measurements[C]∥Proc of t he 4th International Symposium on Cavitation. Pasadena: 2001: 1-13. [7] WANG Tian-kui, LU Fang, FAN Xiao-bing, et al. A new large cavitation ch annel in China ship scientific research center[J]. Journal of Hydrodynamics Se r B, 2003, 15(4): 59-62. [8] Duttweiler M, Brennen C. Experimental investigation ofan instability on a cavitating propeller[C]∥Proc of FEDSM'99. San Francisco, 1999: 1-7. [9] Duttweiler M, Brennen C. Surge instability on a cavitating propeller[J] . J. Fluid Mech, 2002, 458:133-152. [10] Ross  D. Mechanics of underwater noise[M]. 3rd Edition. Lo s Altos: Peninsula Publishing, 1983: 253-285. [11] Kummert A. Fuzzy technology implemented in sonar system[J]. IEEE J Oce anic Eng, 1993, 18(4): 483-490. [12] 王广斌, 刘义伦, 金晓宏, 等. 基于最小二乘原理的趋势项处理及其MATLA B的实现[J]. 有色设备, 2005, (5): 4-8. WANG Guang-bin, LIU Yi-lun, JIN Xiao-hong, et al. Treatment of tendency part and its MATLAB accomplishment based on least-square principle[J]. Non-ferrou s Metallurgical Equipment, 2005, (5): 4-8. (in Chinese) |