이름 : | 박효진 |
직함 : | 박사과정 |
이메일 : | hjpark1021@yonsei.ac.kr |
전화 : | |
연구실 : | 기후이론 연구실 / 첨단관 307호 |
웹페이지 : | https://ysctl.yonsei.ac.kr/ |
연구분야
- Indian Ocean Dipole
- Inter-basin interaction
학력
- M.Sc (2024) in Atmospheric Sciences, Yonsei University, Seoul, Korea
- B.Sc (2022) in Atmospheric Sciences and Applied Statistics, Yonsei University, Seoul, Korea
수상내역
논문
- C. Liu, S.-I. An, S.-K. Kim, M. F. Stuecker, W. Zhang, F.-F. Jin, J.-H. Park, L. Jiang, A. Xue, X. Geng, H.-J. Park, Y.-M. Yang, J.-S. Kug (2024) Synchronous decadal climate variability in the tropical Central Pacific and tropical South Atlantic, npj Climate and Atmospheric Science, 7, 253. https://doi.org/10.1038/s41612-024-00806-y
- J.-H. Park, Y.-M.Yang, Y.-G. Ham, H.-S. Jo, H.-J. Park, S.-E. Park, C. Liu, G.Mandal, S.-I. An, J.-S. Kug (2024) significant winter Atlantic Nino effect on ENSO and its future projection, npj Climate and Atmospheric Science, 7, 238. https://doi.org/10.1038/s41612-024-00790-3
- H.-J. Park, S.-I. An, J.-H. Park, M.F. Stuecker, C.Liu, S.-W. Yeh (2024) Local feedback and ENSO govern decadal changes in variability and seasonal synchronization of the Indian Ocean Dipole, Communications Earth and Environment 5,357. https://doi.org/10.1038/s43247-024-01525-1
- G. Pathirana, K.-M. Noh, D.-G. Lee, H.-J. Park, D. Wang, J.-S. Kug (2024) Intensified Surface Chlorophyll Responses to the Indian Ocean Dipole Under Greenhouse Warming, Environmental Research Letters, 19, 6. https://doi.org/10.1088/1748-9326/ad4db8
- S.-K. Kim, H.-J. Park, S.-I. An, C. Liu, W. Cai, A. Santoso, J.-S. Kug,(2024) Decreased Indian Ocean Dipole variability under prolonged greenhouse warming, Nature Communications, 15, 2811. https://doi.org/10.1038/s41467-024-47276-7
- J.-H. Park, J.-S. Kug, Y.-M. Yang, M.-K. Sung, S. Kim, H.-J. Kim, H.-J. Park, S.-I. An,(2023) Distinct decadal modulation of Atlantic-Niño influence on ENSO. npj Clim Atmos Sci 6, 105. https://doi.org/10.1038/s41612-023-00429-9
- S.-I. An, H.-J. Park, S.-K. Kim, W. Cai, A. Santoso, D. Kim, J.-S. Jug,(2023) Main drivers of Indian Ocean Dipole asymmetry revealed by a simple IOD model, npj Clim Atmos Sci 6, 93. https://doi.org/10.1038/s41612-023-00422-2
- S.-I An, H.-J. Park, S.-K. Kim, J. Shin, S.-W. Yeh, J.-S. Jug,(2022) Intensity changes of Indian Ocean Dipole Mode in a Carbon Dioxide Removal Scenario, npj Climate and Atmospheric Science, 5, 20. https://doi.org/10.1038/s41612-022-00246-6