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The Loss of Two British Trawlers—A Study in Wave Refraction

Published online by Cambridge University Press:  18 January 2010

Extract

The author is Professor of Oceanography in the School of Engineering and Science of New York University and this paper was prepared for the Imco joint ad hoc group for the study of external forces affecting ships. Reviewing the circumstances attending the loss of the trawlers Blue Crusader and Boston Pionair in 1965 he attributes them to high pyramidal seas caused by the crossing of wave trains refracted in water of varying depth. The use of model experiments, air photography and laser altimeters is suggested for verifying the theoretical conclusions, in the light of which corrective measures might be taken when navigating under such conditions.

Type
Research Article
Copyright
Copyright © The Royal Institute of Navigation 1972

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References

REFERENCES

1Chao, Y. Y. (1971). The asymptotic evaluation of a wave field near a smooth caustic. J. Geophys. Res., 76 (30). 74017408.Google Scholar
2Ewing, J. A. and Hogben, N. (1971). Wave spectra from two British research trawlers. Ship Division, National Physical Laboratory Ship Report 150, March.Google Scholar
3Kent, J. L. (1958). Ships in Rough Water. Thomas Nelson and Sons, Ltd.Google Scholar
4Ross, D. L. and Cardone, V. (1970). Laser observations of wave growth and foam density for fetch limited 25 m/s winds. Third Annual Earth Resources Program Review, Vol. III, Hydrology and Oceanography, National Aeronautics and Space Administration MSC-03742.Google Scholar
5Schule, J. J., Simpson, L. and DeLeonibus, P. S. (1971). A study of fetch-limited wave spectra with an airborne laser. J. Geophys. Res., 76, 41604171.CrossRefGoogle Scholar