研究方向:气候变化、海-气相互作用
招生专业包括但不限于:海洋科学、大气科学、地理学、物理等
2010.09-2015.06: 中国海洋大学,博士
2013.08-2015.05: Scripps海洋研究所,联合培养博士
2006.09-2010.06: 中国海洋大学,学士
2024.07至今:北京师范大学,教授
2019.07-2024.06:北京师范大学,副教授
2017.06-2019.06: 北京师范大学,讲师
2015.06-2017.06: 北京师范大学,博士后
本科生课程:海洋科学初探
研究生课程:全球变化科学与技术、全球气候变化
国家自然科学基金-优秀青年科学基金,年际及年代际海-气耦合模态关键过程与机制及其对全球变暖响应(2024-2026),主持
国家重点研发计划项目,气候系统年代际变化海-气关键过程、机理与预测(2023-2028),骨干成员
国家自然科学基金面上基金,太平洋年代际振荡对全球变暖的响应及机理,(2020-2023), 主持
国家自然科学基金-青年科学基金,印度洋偶极子年代际变率:ENSO强迫和内部变率(2017-2019),主持
国家重点研发计划“全球变化及应对”重点专项,全球变暖“停滞”现象辨识与机理研究(2016-2021),骨干成员
中国博士后科学基金,大西洋经向模态:ENSO影响和内部变率(2015-2017),主持
Chen, Y., Y. Xu, L. Wang, Y. Liang, N. Li, J. Lourenco, Y. Yang, Q. Lin, L. Wang, H. Zhao, B. Cazelles, H. Song, Z. Liu, Z. Wang, O. J. Brady, S. Cauchemez*, H. Tian*, 2024: Indian Ocean temperature anomalies predict long-term global dengue trends, Science, 384, 639-646.
Y. Yang*, X. Cheng, L. Wu, W. Cai, Y. Chen, Mechanisms of model bias impacting responses of the Atlantic cold tongue to greenhouse warming, 2024, Environ. Res. Lett., 19, 024037.
Cai, W. *, B. Ng, T. Geng, F. Jia, L. Wu*, … Y. Yang, et al., 2023: Anthropogenic impacts on twentieth-century ENSO variability changes, Nat. Rev. Earth Environ, 4, 407–418.
Cai, W. *, F. Jia, S. Li, A. Purich, G. Wang, L. Wu*, … Y. Yang, et al., 2023: Antarctic shelf ocean warming and sea ice melt affected by projected El Niño changes, Nat. Clim. Chang., 13, 235-239 (2023).
Y. Yang, L. Wu*, W. Cai*, F. Jia, B. Ng, G. Wang, T. Geng, Suppressed Atlantic Niño/Niña variability under greenhouse warming, 2022, Nat. Clim. Chang., 12, 814-821. https://doi.org/10.1038/s41558-022-01444-z
Geng, T., W. Cai *, L. Wu*, A. Santoso, G. Wang, Z. Jing, B. Gan, Y. Yang, S. Li, S. Wang, Z. Chen and M. McPhaden, 2022: Emergence of changing Central-Pacific and Eastern-Pacific El Niño-Southern Oscillation in a warming climate. Nat Commun, 13, 6616. https://doi.org/10.1038/s41467-022-33930-5
Hou, Y., W. Cai, D. M. Holland, X. Cheng , J. Zhang, L. Wang, N. C. Johnson, F. Xie, W. Sun, Y. Yao, X. Liang, Y. Yang, C.-H. Chang, M. Xin and X. Li*, 2022: A surface temperature dipole pattern between Eurasia and North America triggered by the Barents–Kara sea-ice retreat in boreal winter. Environ. Res. Lett., 17, 114047.
Zhao, F., Liang, X., Tian, Z., C. Liu, X. Li, Y. Yang, M. Li, N. Liu: Impacts of the long-term atmospheric trend on the seasonality of Antarctic sea ice. Clim Dyn, 60, 1865-1883 (2022).
Yang, Y.*, L. Wu, Y. Guo, B. Gan, W. Cai, G. Huang, X. Li, T. Geng, Z. Jing, S. Li, X. Liang, S.-P. Xie, 2021: Greenhouse warming intensifies north tropical Atlantic climate variability. Sci. Adv., 7, eabg9690.
Cai, W. *, A. Santoso, M. Collins, … Y. Yang, et al., 2021: Changing El Nino-Southern Oscillation in a warming climate. Nat. Rev. Earth Environ, 2, 628-644.
Jing, Z., S. Wang, L. Wu*, P. Chang, Q. Zhang, B. Sun, X. Ma, B. Qiu, J. Small, F.-F. Jin, Z. Chen, B. Gan, Y. Yang, H. Yang, X. Wan, 2020: Maintenance of mid-latitude oceanic fronts by mesoscale eddies. Sci. Adv., 6, eaba7880.
Li, S., L. Wu*, Y. Yang, T. Geng, W. Cai*, B. Gan, Z. Chen, Z. Jing, G. Wang, X. Ma, 2020: The Pacific Decadal Oscillation less predictable under greenhouse warming. Nat. Clim. Change, 10, 30-34, doi:10.1038/s41558-019-0663-x.
Gong Z., C Sun, J Li, J Feng, F Xie, R Ding, Y. Yang, J Xue, 2020: An inter-basin teleconnection from the North Atlantic to the subarctic North Pacific at multidecadal time scales, Clim. Dyn., 54, 807-822.
Geng, T., Y. Yang*, L. Wu, 2019: On the mechanisms of Pacific Decadal Oscillation Modulation in Warm Climate. J. Climate, 32, 1443-1459.
Cai, W.,L. Wu*, … Y. Yang, et al., 2019: Pantropical climate interactions. Science, 363, eaav4236.
Geng, T. W. Cai, L.-X. Wu*, Y. Yang, 2019: Atmospheric Convection Dominates Genesis of ENSO Asymmetry, Geophys. Res. Lett., 46, 8387-8396.
Yang, Y.*, S.-P. Xie, L. Wu, Y. Kosaka, and J. Li, 2018: ENSO forced and local variability of North Tropical Atlantic SST: model simulations and biases. Clim. Dyn., 51, 4511-4524. doi: 10.1007/s00382-017-3679-9.
Cai, W. *, G. Wang, B. Dewitte, L. Wu*, A. Santoso, K. Takahashi, Y. Yang, A. Carreric and M. McPhaden, 2018: Increased variability of Eastern Pacific El Nino under greenhouse warming. Nature, 564, 201-206.
Xie, F. *, J. Li*, C. Sun, R. Ding, N. Xing, Y. Yang, X. Zhou and X. Ma, 2018: Improved global surface temperature simulation using stratospheric ozone forcing with more accurate variability, Scientific Reports,8, 14474. doi: 10.1038/s41598-018-32656-z
Yang, H., B. Qiu, P. Chang, L. Wu, S. Wang, Z. Chen and Y. Yang, 2018: Decadal variability of eddy characteristics and energetics in the Kuroshio Extension: unstable versus stable states, J. Geophys. Res.-Oceans, 123(9), 6653-6669.
Feng, J. *, J. Li, F. Kucharski, Y. Wang, C. Sun, F. Xie, Y. Yang, 2018: Modulation of the meridional structures of the Indo-Pacific warm pool on the response of the Hadley circulation to tropical SST, J. Climate, 31, 8971-8984.
Xie, F., X. Ma*, J. Li, J. Huang, W. Tian, J. Zhang, Y. Hu, C. Sun, X. Zhou, J. Feng and Y. Yang, 2018: An advanced impact of Arctic stratospheric ozone changes on spring precipitation in China, Clim. Dyn., 51, 4029-4041. doi: 10.1007/s00382-018-4402-1
Yang, Y. *, S.-P. Xie, L. Wu, Y. Kosaka, and J. Li, 2017: Causes of enhanced SST variability over the equatorial Atlantic and its relationship to the Atlantic zonal mode in CMIP5. J. Climate, 30, 6171-6182. doi: 10.1175/JCLI-D-16-0866.1.
Yang, Y. *, J. Li, L. Wu, Y. Kosaka, Y. Du, C. Sun, F. Xie, and J. Feng, 2017: Decadal Indian Ocean dipolar variability and its relationship with the tropical Pacific. Adv. Atmos. Sci., 34(11),1282-1289, doi: 10.1007/s00376-017-7009-2.
Tian, W., Y. Li, F. Xie*, J. Zhang, M.P. Chipperfield, W. Feng, Y. Hu, S. Zhao, X. Zhou, Y. Yang and X. Ma, 2017: The Relationship between Lower-Stratospheric Ozone at Southern High Latitudes and Sea Surface Temperature in the East Asian Marginal Seas in Austral Spring. Atmos. Chem. Phys., 17, 6705-6722. doi: /10.5194/acp-17-6705-2017.
Xie, F., Li, J. *, Zhang, J., Tian, W. S., Hu, Y., Zhao, S., Sun C., Ding, R., Feng J., Yang Y., 2017: Variations in north pacific sea surface temperature caused by arctic stratospheric ozone anomalies. Environmental Research Letters, 12, 114023.
Feng, J. *, Y. Chen, J. P. Li, Y. Li, and Y. Yang, 2017: Contrasting responses of the Hadley circulation to different meridional SST structures during the seasonal cycle in CMIP5 models. SOLA, 13, 102-108, doi: 10.2151/sola.2017-019.
Yang, Y., S.-P. Xie*, L. Wu, Y. Kosaka, N.-C. Lau, and G. A. Vecchi, 2015: Seasonality and predictability of the Indian Ocean dipole mode: ENSO forcing and internal variability. J. Climate, 28, 8021–8036, doi: http://dx.doi.org/10.1175/JCLI-D-15-0078.1.
Yang, Y. *, and L. Wu, 2015: Changes of air-sea coupling in the North Atlantic over the 20th century. Adv. Atmos. Sci., 32(4), 445-456, doi: 10.1007/s00376-014-4090-7.
Yang, Y., L. Wu*, and C. Fang, 2012: Will global warming suppress North Atlantic Tripole decadal variability? J. Climate, 25, 2040-2055.