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On sound extinction by biological targets

Autorzy
Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
To address the importance of sound extinction by densely aggregated biological entities, a systematic theoretical study of this problem is presented. The physical insight into the extinction phenomenon is given. The agreement between theoretical and experimental results is discussed.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
69--80
Opis fizyczny
Bibliogr. 37 poz., rys.
Twórcy
autor
  • Institute of Oceanology, Polish Academy of Sciences, Sopot, Poland, Powstańców Warszawy 55,81 - 712, Sopot, Poland
autor
  • Woods Hole Oceanographic Institution, Woods Hole, MA 02543 USA
Bibliografia
  • 1. F. Armstrong, E. J. Simmonds, D. N. MacLennan, Sound losses through aggregations of fish, Proc. IOA, Vol. 11,35 - 43,1989.
  • 2. D. Brill and G. C. Gaunaurd, Approximate descriptions of the sound fields scattered by insonified, submerged, ribbed, flat-ended cylindrical structures, J. Acoust. Soc. Am., Vol. 93, 71 - 79, 1993.
  • 3. J. J. Burczyński. R. L. Johnson, H. Kreiberg and W.B. Kirchner, Acoustic estimation of dense aggregations offish in sea pens, Rapp. P. v. Reun. Cons. Int. Explor. Mer., Vol. 189,54 - 64, 1990.
  • 4. D. Chu and Z. Ye, A Phase - Compensated DWBA representation of the bistatic seattering. Weakly seattering objects: application to zooplankton, J. Acoust. Soc. Am., Vol. 106, Pt. 1, 1732 - 1743,1999.
  • 5. I. E. Davies, Attenuation of sound by schooled anchovies, J. Acoust. Soc. Am., 54, 213 - 217, 1973.
  • 6. O. Diachok, Effects of absorptivity due to fish on transmission loss in shallow water, J. Acoust. Soc. Am., Vol. 105,2107 - 2128,1999.
  • 7. D. T. DiPerna and T. K. Stanton, Sound scattering by cylinders of noncircular cross section: A conformaI mapping approach, J. Acoust. Soc. Am., 96, 3064 - 3079,1994.
  • 8. K. G. Foote, Analysis of empirical observations on the scattering of sound by encaged aggregation offish, Fiskeridir. Skr. Ser. Havunders, Vol. 16,423 - 456, 1978.
  • 9. K. G. Foote, Correcting acoustic measurements of scatterer density for extinction, J. Acoust. Soc. Am., Vol. 88,1543 - 1546, 1990.
  • 10. K. G. Foote, E. Ona and R. Toresen, Determing the extinction cross section of aggregating fish, J. Acoust. Soc. Am., Vol. 91, Pt. 1,1983 - 1989, 1992.
  • 11. M. Furusawa, K. Ishii, and Y. Miyanohana, Simultaneous calibration method for precise measurements of target strength of fish and attenuation of sound by schooled fish, Proc. of Symp. Fish. Acoust. (ICES FAO), 1- 18, Bergen, Norway, 1982.
  • 12. M. Furusawa, K. Ishii, and Y. Miyanohana, Attenuation of sound by schooling fish, J. Acoust. Soc. Am., 92, Pt. 1, 987 - 994, 1992.
  • 13. M. Furusawa, K. Ishii, Y. Miyanohana and Y. Maniwa, Experimental investigation of an acoustical method to estimate fish abundance using culture nets, Jpn. J. Appl. Phys., Vol. 23, Suppl. 23 - l, 101 - 103,1984.
  • 14. G. C. Gaunard, Sonar cross section of bodies partially insonified by finite sound beams, IEEE 1. Ocean. Eng. OE - 10,213 - 230,1985.
  • 15. N. Gorska, Evaluation of sound extinction and echo interference in densely aggregated zooplankton, Oceanologia, Vol. 42, 1 - 20,2000.
  • 16. N. Gorska, D. Chu, Some aspects of sound extinction by zooplankton, submitted to J. Acoust. Soc. Am.
  • 17. N. Gorska and D. Chu, Some aspects of sound extinction by zooplankton, Proc. of 5 1h European Conference on Underwater Acoustics, ECUA 2000, Lyon, France, Vol. 2, 1467 - 1472,2000.
  • 18. T. Hashimoto, Characteristics of ultrasonic wave transmitted horizontally in the water, Rep. Fish. Boat. Lab., Vol. 2, 55 - 58,1955.
  • 19. H. Ikuno and K. Yasura, Numerical calculation of the scattered field from a periodic deformed cylinder using the smoothing process on the mode matching method, Radio Sci., Vol. 13,937 - 946,1978.
  • 20. K. Ishii, M. Furasawa and Y. Miyanohana, Measurements of attenuation of sound by schooling fish, Tech. Rep. Nat. Res. Inst. Fish. Eng. (Fish Boat and Instr.) Vol. 4, 73 - 94, 1983.
  • 21. K. Ishii, M. Furasawa and Y. Miyanohana, Measurements of attenuation of sound by schooling fish, Proc. Acoust. Soc. Jpn., March 1985,715 - 716, 1985.
  • 22. A. Ishimaru, Wave Propagation and Seattering in Random Media v.1., Academic Press, New York, 14, 1978.
  • 23. M. C. Junger, Seattering by slender bodies of revolution, J. Acoust. Soc. Am., Vol. 72, 1954 - 1956, 1982.
  • 24. D. N. MacLennan, F. Armstrong, E. J. Simmonds, Further observations on the attenuation of sound by aggregations of fish, Proc. 10A, VoI. 12, 99 - 106, 1990.
  • 25. K. Olsen, Sound attenuation within schools of herring, ICES CM, B:44, 15, 1986.
  • 26. C. Partridge and E. R. Smith, Acoustic seattering from bodies: Range of validity of the deformed cylinder method, J. Acoust. Soc. Am., VoI. 97, 784 -795, 1995.
  • 27. T. A. K. Pillai, V. V. Varadan and V. K. Varadan, Sound scattering by rigid and elastic elliptical cylinders in water, J. Acoust. Soc. Am., 72, 1032 - 1037, 1982.
  • 28. A. Reinen and J. Dalen, Correction for an unknown extinction cross section in acoustic fish abundance estimation, Proc. of Int. Conf. Sonar Signal Processing (Inst. of Acoust.), Loughborough, England, 1 - 7, 1991.
  • 29. L Rottingen, Relasjoner mellom integrete ekkointensiteter of fisketettheter, Cand. Real. Dissertation, University of "Bergen, Bergen, Norway, 1975,
  • 30. L Rottingen, On the relation between echo intensity and fish density, Fiskeridir. Skr. Ser. Havunders, Vol. 16,301 - 314,1976.
  • 31. M. L. Rumerman, Application of the Sommerfeld - Watson transformation to scattering of acoustic waves obliquely incident upon cylindrical shells, J. Acoust. Soc. Am., Vol. 91, 2501- 2509, 1992.
  • 32. M. L. Rumerman, Increased accuracy in the application of the the Sommerfeld - Watson transformation to acoustic scattering from cylindrical shells, J. Acoust. Soc. Am., VoI. 90, 2739 - 2751, 1990.
  • 33. T. K. Stanton, Sound scattering by cylinders of finite length. III. Deformed cylinders, J. Acoust. Soc. Am., VoI. 86, 691 - 705, 1989.
  • 34. R. Toresen, Absorption of acoustic energy in dense herring schools studied by the attenuation in the bottom echo signal, Fish. Res. VoI. 10, 317 - 327, 1991.
  • 35. Z. Ye, On acoustic attenuation by swimbladder fish, J. Acoust. Soc. Am., VoI. 100,669 - 672,1996.
  • 36. Z. Ye, Anovel approach to sound scattering by cylinder of finite length, J. Acoust. Soc. Am., VoI. 102,877 - 884,1997.
  • 37. Z. Ye, E. Hoskinson, E. Dewey, R. K. Diug and D. M. Farmer, A method for acoustic scattering by slender bodies. L Theory and verification, J. Acoust. Soc. Am., VoI. 102, 1964- 1976,1997.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-73448094-77de-469c-b0b3-8eb6e24e4c09
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