파랑 스펙트럼 재현 기법 개발의 필요성

  • An, Seong-Ho (Sandia National Laboratories Water Power Technologies)
  • Published : 2022.03.31

Abstract

Keywords

References

  1. Ahn, S., & Neary, V. S. (2020). Non-stationary historical trends in wave energy climate for coastal waters of the United States. Ocean Engineering, 216(May), 108044. https://doi.org/10.1016/j.oceaneng.2020.108044
  2. Dean, R. G., & Dalrymple, R. A. (1991). Water wave mechanics for engineers and scientists. (Advanced Series on Ocean Engineering, Ed.). World scientific 2.
  3. Det Norske Veritas AS. (2014). Recommended Practice-Environmental Conditions and Environmental Loads; DNV-RP-C205. Oslo, Norway.
  4. Goda, Y. (2010). Random Seas and Design of Maritime Structures Advanced Series on Ocean Engineering. Vol.33 (3rd ed.). World Scientific Publishing Ltd.
  5. Hasselmann, K., Barnett, T. P., Bouws, E., Carlson, H., Cartwright, D. E., Enke, K., et al. (1973). Measurements of wind-wave growth and swell decay during the Joint North Sea Wave Project (JONSWAP), Erganzungsheft 13, No. A.
  6. IEC. (2015). International Standard, Marine energy - Wave, tidal and other water current converters - Part 101: Wave energy resource assessment and characterization, IEC 62600-101: Edition 1.0. Geneva, Switzerland.
  7. ISO. (2015). Petroleum and natural gas for offshore structures - Part 1: Metocean design and operating considerations (Vol. 2014). Switzerland.
  8. Pierson, W. J., & Moskowitz, L. (1964). A Proposed Spectral Form for Fully Developed Wind Seas Based on the Similarity Theory of S . A . Kitaigorodskii. , Journal of Geophysical Research, 69(24), 5181-5190. https://doi.org/10.1029/JZ069i024p05181
  9. U.S. Army Corps of Engineers. (2008). Coastal Engineering Manual, 1110-2-1100, Part II (Vol. 1100).