ResearchGate个人网页:https://www.researchgate.net/profile/Lingfeng-Tao
期刊论文:
2024
L. Tao, Yang, X.-Q., Sun, L., Sun, X., Fang, J., Cai, D., Zhou, B., and Chen, H. (2024), Meridional path of ENSO impact on following early-Summer North Pacific climate, Geophys. Res. Lett., 51, e2024GL111079, doi: 10.1029/2024GL111079.
L. Tao, Sun, X., Yang, X.-Q., Fang, J., Cai, D., Zhou, B., and Chen, H. (2024), Cross-season effect of spring Kuroshio-Oyashio extension SST anomalies on following summer atmospheric circulation, Geophys. Res. Lett., 51, e2024GL108750, doi: 10.1029/2024GL108750.
Q. Huang, J. Fang, L. Tao, and X.-Q. Yang (2024), Wintertime ocean–atmosphere interaction processes associated with the SST variability in the North Pacific subarctic frontal zone, Climate Dyn., 62, 1159-1177, doi:10.1007/s00382-023-06958-6.
Z. Q. Zhang, P. Liang, Y. J. Liu, Y. Wu, L. Tao, Q. Chen, Y. Ding (2024), Causes of atypical Meiyu in the lower Yangtze River basin in 2022: Subseasonal perspective and predictions. J. Meteor. Res., 39(1), 1–21, doi: 10.1007/s13351-025-4087-4.
2023
L. Tao, J. Fang, X.-Q. Yang, X. Sun, D. Cai, and Y. Wang (2023), Role of North Atlantic Tripole SST in Mid-Winter Reversal of NAO, Geophys. Res. Lett., 50(15), e2023GL103502, doi:10.1029/2023GL103502.
L. Tao, X. Sun, X.-Q. Yang, J. Fang, and Z.-Q. Zhang (2023), Effect of Oceanic Stochastic Forcing on Wintertime Atmospheric Decadal Variability Over Midlatitude North Pacific, J. Geophys. Res.: Atmos., 128(2), e2022JD037594, doi:10.1029/2022JD037594.
Sun, L., X.-Q. Yang, and L. Tao (2023), Impact of ENSO on Wintertime Land Surface Variables in Northern Hemisphere Extratropics: Role of Atmospheric Moisture Processes, J. Climate, 36(16), 5443-5460, doi:10.1175/JCLI-D-22-0777.1.
Xu, Z., X.-Q. Yang, L. Tao, and L. Sun (2023), Impact of anomalous Eurasian blocking activities on the East Asian Meiyu rainfall, Climate Dyn., 61, 3127-3146, doi:10.1007/s00382-023-06735-5.
Zhao, M., X.-Q. Yang, and L. Tao (2023), Quantifying the processes of accelerated wintertime Tibetan Plateau warming: outside forcing versus local feedbacks, Climate Dyn., 61, 3289-3307, doi:10.1007/s00382-023-06741-7.
Luo, Y., X.-Q. Yang, L. Sun, and L. Tao (2023), What Determines the Leading Mode of Wintertime Northern Hemisphere Snow-Cover Interannual Variability?, J. Climate, 36(16), 5381-5398, doi:10.1175/JCLI-D-22-0934.1.
Li, W., X.-Q. Yang, J. Fang, L. Tao, and X. Sun (2023), Asymmetric Boreal Summer Intraseasonal Oscillation Events over the Western North Pacific and Their Impacts on East Asian Precipitation, J. Climate, 36(8), 2645-2661, doi:10.1175/JCLI-D-22-0750.1.
2022
L. Tao, J. Fang, X.-Q. Yang, X. Sun, and D. Cai (2022), Midwinter Reversal of the Atmospheric Anomalies Caused by the North Pacific Mode-Related Air-Sea Coupling, Geophys. Res. Lett., 49(20), e2022GL100307, doi:10.1029/2022GL100307.
Cai, D., L. Tao, X.-Q. Yang, X. Sang, J. Fang, X. Sun, W. Wang, and H. Yan (2022), A climate perspective of the quasi-stationary front in southwestern China: structure, variation and impact, Climate Dyn., 59(1), 547-560, doi:10.1007/s00382-022-06151-1.
Sang, X., X.-Q. Yang, L. Tao, J. Fang, and X. Sun (2022), Decadal changes of wintertime poleward heat and moisture transport associated with the amplified Arctic warming, Climate Dyn., 58(1), 137-159, doi:10.1007/s00382-021-05894-7.
Sang, X., X.-Q. Yang, L. Tao, J. Fang, and X. Sun (2022), Evaluation of synoptic eddy activities and their feedback onto the midlatitude jet in five atmospheric reanalyses with coarse versus fine model resolutions, Climate Dyn., 58(5), 1363-1381, doi:10.1007/s00382-021-05965-9.
2021及之前
L. Tao, X.-Q. Yang, J. Fang, and X. Sun (2020), PDO-Related Wintertime Atmospheric Anomalies over the Midlatitude North Pacific: Local versus Remote SST Forcing, J. Climate, 33(16), 6989-7010, doi:10.1175/JCLI-D-19-0143.1.
L. Tao, X. Sun, and X.-Q. Yang (2019), The Asymmetric Atmospheric Response to the Midlatitude North Pacific SST Anomalies, J. Geophys. Res.: Atmos., 124(16), 9222-9240, doi:10.1029/2019jd030500.
Sun, X., L. Tao, and X.-Q. Yang (2018), The Influence of Oceanic Stochastic Forcing on the Atmospheric Response to Midlatitude North Pacific SST Anomalies, Geophys. Res. Lett., 45(17), 9297-9304, doi:10.1029/2018GL078860.
Sun, L., X.-Q. Yang, L. Tao, J. Fang, and X. Sun (2021), Changing Impact of ENSO Events on the Following Summer Rainfall in Eastern China since the 1950s, J. Climate, 34(20), 8105-8123, doi:10.1175/jcli-d-21-0018.1.
Wang, L., X. Sun, X.-Q. Yang, L. Tao, and Z. Zhang (2021), Contribution of water vapor to the record-breaking extreme Meiyu rainfall along the Yangtze River valley in 2020, J. Meteor. Res., 35(4), 557-570, doi:10.1007/s13351-021-1030-1.
王昱, 杨修群, 孙旭光, 房佳蓓, 陶凌峰, 张志琦 (2021), 一种基于全球动力模式和SMART原理结合的统计降尺度区域季节气候预测方法, 气象科学, 41(5): 569-583, doi: 10.12306/2021jms.0049.
发明专利:
基于旬倾向和物理模态建模的次季节气候预测方法与系统,专利号:ZL202110834465.7(排名2/6)
基于可预测气候模态的动力-统计结合季节气候预测方法,专利号:ZL202110911563.6(排名3/6)
一种用于气候预测的异常相对倾向生成方法与系统,专利号:ZL202111570454.9(排名4/7)
基于热带大气次季节振荡信号的旬降水预测方法和系统,专利号:ZL202111570421.4(排名6/8)