파랑에너지 분석 연구 동향과 한반도 해역의 파랑 에너지

  • 발행 : 2020.10.31

초록

키워드

참고문헌

  1. Ahn, S., Ha, T., 2020. Wave energy resource hotspots and dominant wave energy systems in South Korean coastal waters. Energy In review.
  2. Ahn, S., Haas, K.A., Neary, V.S., 2020a. Wave energy resource characterization and assessment for coastal waters of the United States. Appl. Energy 267. https://doi.org/10.1016/j.apenergy.2020.114922
  3. Ahn, S., Haas, K.A., Neary, V.S., 2020b. Dominant Wave Energy Systems and Conditional Wave Resource Characterization for Coastal Waters of the United States. Energies 13, 3041. https://doi.org/10.3390/en13123041
  4. Department of Energy (DOE), 2015. Quadrennial Tecnnology Revies 2015, Chapter 4: Advancing Clean Electric Power Technologies, Technology Assessments.
  5. Hand, M.M., Baldwin, S., DeMeo, E., Reilly, J.M., Mai, T., Arent, D., Porro, G., Meshek, M., Sandor, D., 2012. Renewable Electricity Futures Study (No. NREL/TP-6A20-52409).
  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.
  7. Kim, G., Lee, M.E., Lee, K.S., Park, J.S., Jeong, W.M., Kang, S.K., Soh, J.G., Kim, H., 2012. An overview of ocean renewable energy resources in Korea. Renew. Sustain. Energy Rev. 16, 2278-2288. https://doi.org/10.1016/j.rser.2012.01.040
  8. Shin, J., Woo, J.R., Huh, S.Y., Lee, J., Jeong, G., 2014. Analyzing public preferences and increasing acceptability for the Renewable Portfolio Standard in Korea. Energy Econ. 42, 17-26. https://doi.org/10.1016/j.eneco.2013.11.014
  9. Yang, Z., Neary, V.S., 2020. High-resolution hindcasts for U.S. wave energy resource characterization. Int. Mar. Energy J. 3, 65-71. https://doi.org/10.36688/imej.3.65-71
  10. 산업통상자원부, 2017. 재생에너지 3020 이행계획 (안) 2017.12