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http://dx.doi.org/10.7846/JKOSMEE.2014.17.2.63

Evaluation of Wave Characteristics and JONSWAP Spectrum Model in the Northeastern Jeju Island on Fall and Winter  

Kang, Dong-Hyub (Jeju National University Graduate School of Specialized Wind Energy)
Lee, Byung-Gul (Department of Civil Engineering, Jeju National University College of Ocean Science)
Publication Information
Journal of the Korean Society for Marine Environment & Energy / v.17, no.2, 2014 , pp. 63-69 More about this Journal
Abstract
Analysis frequency spectrum through observed wave data in northeastern shore, jeju island, during winter and fall, and review wave characteristics. In order to compute maximum wave height, we calculate the ratio of significant wave height to maximum wave height using the linear regression equation. In addition, for calculating JONSWAP spectrum, we assumed ${\gamma}$ value using significant wave height and peak frequency in the observation area. Consequently, the highest frequency is below 1 m in the case of significant wave height and during the first observation, the mean of height was estimated at 0.523 m and during the scend observation, it was 0.423 m. Furthermore, in peak frequency, the highest frequency was 0.12 Hz~0.15 Hz (period is nearly 6.67s~8.33s), the results of ${\gamma}$ from using significant wave height and peak frequency is 2.72 and the significant wave height calculated by straight linear regression equation was $1.635H_s$.
Keywords
Spectrum Moment; JONSWAP Spectrum model; significant wave height; maximum wave height; peak frequency;
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  • Reference
1 Kim, D.Y., 2007, "On individual wave height distribution of ocean waves", The korean socity of ocean engineers Vol. 21, No. 2, pp. 6-11.
2 Goda, Y., 1985, "Random seas and design of maritime structures", University of Tokyo press.
3 Hong, K.H., 2005, "Technology of development of wave energy of commercialization", The ministry of maritime affairs and fisheries, p. 545.
4 International Standard IEC61400-3, 2009, Part 3: "Design Requirements for Offshore Wind Turbines", pp. 80-81.
5 Kim, N.H., 2006, "Coastal engineering" pp. 64-78.
6 Kim, N.H. and Sim, K.S., 2000, "Analysis of spectrum", pp. 9-34.
7 Kim, N.H., 2004, "Incoming waves design of harbor structures", pp.
8 Suh, K.D., 2010, "Some statistical characteristics of large deepwater waves around the Korean Peninsula", Coastal Engineering 57(2010) pp. 375-384.   DOI   ScienceOn
9 Ryu, H.J., 2006, "Study on optimal sites of wave power generation based on numerical wave model", Hongik university department of shipbuilding & ocean engineering Doctorate thesis p. 275.
10 Ryu, D.H., 2005, "Coast & Harbor engineering", pp. 46-54
11 Ryu, H.J., 2011, "Wave properties in the Uljin sea area", The society of naval architects of Korea, Vol.2011, No.6, pp. 1810-1814.
12 Silvester, R., 1974, "Coastal Engineering 1", pp. 65-75.
13 Kumar, V. S., 2008, "Spectral characteristics of high shallow water waves", pp. 900-911.