1) Lu, R., Zhu, Z., et al. (2024). Basin shift of tropical convection impact on the Western China Autumn Rainfall interannual variability. Climate Dynamics, 62, 10621–10633. 2) Zhu, Z., Lu, R., et al. (2024) A moderator of tropical impacts on climate in Canadian Arctic Archipelago during boreal summer. Nature Communications, 15, 8644. 3) 刘嘉锡, 朱志伟, 卢睿, 李娟. (2024). ENSO循环海表温度演变多样性的客观分类. 高原气象.0 1000-0534.00026 4) Zhu, Z., Lu, R., Fu, S., & Chen, H. (2023). Alternation of the atmospheric teleconnections associated with the Northeast China spring rainfall during a recent 60-year period. Advances in Atmospheric Sciences, 40(1), 168-176. 5) Fu, S., Zhu, Z., & Lu, R. (2023). Changes in the factors controlling Northeast Asian spring surface air temperature in the past 60 years. Climate Dynamics, 61(1), 169-183. 6) Liu, X., Zhu, Z., Lu, R., Miao, Z., Li, W., & Hsu, P. (2023). Unprecedented July rainfall in North China in 2021: Combined effect of Atlantic warming and Arctic sea‐ice loss. Journal of Geophysical Research: Atmospheres, 128(17), e2022JD038068. 7) 姚梦莹, 朱志伟, 卢睿, 等. (2023). 中国西北5月和9月地表气温的年际变率机理及其预测. 大气科学,47(2): 343−358. 8) 卢睿, 朱志伟, 李天明, 潘晓, 江叶艳, & 陆雅君. (2021). 淮河流域夏季极端降水频次空间分布的客观分类及其形成机理. 大气科学,45(6), 1415-1432. 9) Lu, R., Zhu, Z., Li, T., & Zhang, H. (2020). Interannual and interdecadal variabilities of spring rainfall over Northeast China and their associated sea surface temperature anomaly forcings. Journal of Climate, 33(4), 1423-1435. 10) Zhu, Z., Lu, R., Yan, H., Li, W., Li, T., & He, J. (2020). Dynamic origin of the interannual variability of West China autumn rainfall. Journal of Climate, 33(22), 9643-9652. |