All Issue

2013 Vol.32, Issue 6 Preview Page
30 November 2013. pp. 472-483
Abstract
References
1
1.W. J. Seong, “A study on technical concept of sonar system equipped next-generation submarine” (in Korean), R.O.K Naval combat development group report (2008).
2
2.D. McCammon, “Active sonar modeling with emphasis on sonar simulators,” DRDC Atlantic report, CR 2004-130 (2004).
3
3.J. A. Theriault and D. D. Dellis, “Shallow-water low frequency active sonar modelling issues,” Proceedings of the MTS/IEEE Oceans ’97 Conference, 672-678 (1997).
4
4.P. C. Etter, “Recent advances in underwater acoustic modelling and simulation,” J. Sound Vib. 240, 351-383 (2001).
5
5.S. K. An, Development of a passive sonar simulator based on ray model, (Master’s thesis, Seoul National University, 2011).
6
6.B. U. Kim, Noise simulation and interference pattern analysis for submarine passive sonar, (Master’s thesis, Seoul National University, 2013).
7
7.R. J. Urick, Principles of underwater sound (McGraw-Hill, New York, 1975), pp. 17-30.
8
8.M. Deaett, “Signature modeling for acoustic trainer synthesis,” IEEE J. Ocean. Eng. 12, 143–147 (1987).
9
9.D. Ross, Mechanics of underwater noise (Pergamon, New York, 1976), pp. 272-287.
10
10.K. H. Lee, Y. C. Chu, S. I. Kim, W. J. Seong, “A broad-band ray model using gaussian interpolation” (in Korean), J. Acoust. Soc. Kr. Suppl. 1(s) 29, 110-112 (2010).
11
11.G. M. Wenz, “Acoustic ambient noise in the ocean: spectra and sources,” J. Acoust. Soc. Am. 34, 1936–1956 (1962).
12
12.B. K Choi, B. C. Kim, C. S. Kim and B. N. Kim, “Analysis of dependence on wind speed and ship traffic of underwater ambient noise at shallow sea surrounding the Korean peninsula” (in Korean), J. Acoust. Soc. Kr. 22, 233-241 (2003).
13
13.W. M. Carey and R. B. Evans, Ocean ambient noise, Measurement and Theory (Springer, New York, 2011), pp. 99-127.
14
14.R. W. Bannister, “Deep sound channel noise from high‐latitude winds,” J. Acoust. Soc. Am. 79, 41-48 (1986).
15
15.J. H. Wilson, “Very low frequency(VLF) wind‐generated noise produced by turbulent pressure fluctuations in the atmosphere near the ocean surface,” J. Acoust. Soc. Am. 66, 1499-1507 (1979).
16
16.E. J. Skudrzyk and G. P. Haddle. “Noise production in a turbulent boundary layer by smooth and rough surfaces,” J. Acoust. Soc. Am. 32, 19-34 (1960).
17
17.R. P. Hodges, Underwater Acoustics: Analysis, Design and Performance of Sonar (John Wiley and Sons, Chichester, U.K., 2010), pp.193-199.
18
18.G. M. Corcos, “Resolution of pressure in turbulence,” J. Acoust. Soc. Am. 35, 192-199 (1963).
19
19.V. Bhujanga Rao, “Flow-induced noise of a sonar dome,” Applied Acoustics 18, 21-33 (1985).
20
20.L. M. Brekhovskikh, Waves in layered media (Academic Press, New York, 1980), pp. 1-129.
21
21.J. H. Lee, B. N. Kim and K. K. Shin, “Insertion loss of sound waves through composite acoustic window materials,” Current Applied Physics 10, 138-144 (2010).
22
22.M. F. McKenna, D. Ross, S. M. Wiggins and A. H. John, “Underwater radiated noise from modern commercial ships,” J. Acoust. Soc. Am. 131, 92-103 (2012).
Information
  • Publisher :The Acoustical Society of Korea
  • Publisher(Ko) :한국음향학회
  • Journal Title :The Journal of the Acoustical Society of Korea
  • Journal Title(Ko) :한국음향학회지
  • Volume : 32
  • No :6
  • Pages :472-483
  • Received Date : 2012-12-28
  • Revised Date : 2013-07-19
  • Accepted Date : 2013-09-04