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Modified Weibull distribution for maximum and significant wave height simulation and prediction
AbstractCalibration coefficients incorporated in the modified Weibull distribution are more effective for maximum wave height simulation. The parametric relations are derived there from to estimate various wave height statistics including extreme wave heights. The characteristic function of the Weibull distribution is derived. The Weibull distribution is suggested for the newly defined significant wave height simulation by the method of characteristic function. The statistical tools suggested and developed here for predicting the required wave height statistics are validated against the wave data (both deep and shallow) of eastern Arabian Sea comprising rough monsoon conditions also, giving reasonable accuracy.
Modified Weibull distribution for maximum and significant wave height simulation and prediction
AbstractCalibration coefficients incorporated in the modified Weibull distribution are more effective for maximum wave height simulation. The parametric relations are derived there from to estimate various wave height statistics including extreme wave heights. The characteristic function of the Weibull distribution is derived. The Weibull distribution is suggested for the newly defined significant wave height simulation by the method of characteristic function. The statistical tools suggested and developed here for predicting the required wave height statistics are validated against the wave data (both deep and shallow) of eastern Arabian Sea comprising rough monsoon conditions also, giving reasonable accuracy.
Modified Weibull distribution for maximum and significant wave height simulation and prediction
Muraleedharan, G. (author) / Rao, A.D. (author) / Kurup, P.G. (author) / Nair, N. Unnikrishnan (author) / Sinha, Mourani (author)
Coastal Engineering ; 54 ; 630-638
2007-05-01
9 pages
Article (Journal)
Electronic Resource
English
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