국내외 해양에너지 기술개발 동향

  • 고동휘 (한국해양과학기술원 해양공간개발.에너지연구부) ;
  • 이진학 (한국해양과학기술원 해양공간개발.에너지연구부) ;
  • 박진순 (한국해양과학기술원 해양공간개발.에너지연구부) ;
  • 허만웅 (한국해양과학기술원 해양공간개발.에너지연구부)
  • 발행 : 2023.03.31

초록

키워드

과제정보

본 기사는 한국해양과학기술원 기관목적사업인 "해양에너지지 및 항만·해양구조물 고도화 기술 개발(PEA0131)" 과제의 일환으로 수행되었습니다.

참고문헌

  1. Eum, H.-S., Jeong, W.-M., Chang, Y.S., Oh, S.-H. and Park, J.-J. (2020). Wave Energy in Korean Seas from 12-Year Wave Hindcasting, JMSE, 8, 161.
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  3. IEA-OES (2021). Tidal Current Energy Developments Highlights. Ocean Energy Systems.
  4. Ibanez, P. (2008). Energia de las olas: situacion y futuro. Xornada sobre Enerxia que Ven do Mar, Coruna.
  5. Ko, D.-H., Chung, J., Lee, K.-S., Park, J.-S. and Yi, J.-H. (2019). Current Policy and Technology for Tidal Current Energy in Korea. energies, 12, 1807.
  6. Ko, D.-H., Ge, Y., Park, J.-S., Liu, L., Ma, C., Chen, F., Peng, J., Kang S.-K., Yi, J.-H. and Liu, W. (2022). A comparative study of laws and policies on supporting marine energy development in China and Korea. Marine Policy, 141.
  7. Lee, K.-S.; Park, J.-S. Natural Energy Produced by the Sea; Korea Institute of Ocean Science and Technology(KIOST): Busan, Korea, 2013; pp. 94-125.
  8. United Nations (1992). United Nations Framework Convention on Climate Change. UN, New York, USA.
  9. United Nations (1998). Kyoto Protocol to the United Nations Framework Convention on Climate Change. UN, New York, USA.
  10. United Nations (2015). Paris Agreement. UN, New York, USA.
  11. Yi, J.-H., Ko, D.-H., Choi, J.-S., Seo, J.-B. and Lim, S.-T. (2022). Intrenational trends for marine energy technology stadardization activities and national standardization strategies. KSA.