Page 199 - 《武汉大学学报(信息科学版)》2025年第9期
P. 199
第 50 卷第 9 期 江 萌等:北极海冰区 1981—2020 年辐射通量的时空变化特征与分析 1927
of Polar Research, 2020, 32(1): 1-12. J C, et al. Variability, Trends, and Predictability of
[50] 温世强, 常亮 . 北极水汽输送的时空分布特征研究 Seasonal Sea Ice Retreat and Advance in the Chuk⁃
[J]. 极地研究, 2022, 34(3): 265-277. chi Sea [J]. Journal of Geophysical Research:
WEN Shiqiang, CHANG Liang. Temporal and Oceans, 2016, 121(10): 7308-7325.
Spatial Distributions of Water Vapor Transport in [54] BOCCOLARI M, PARMIGGIANI F. Trends and
the Arctic[J]. Chinese Journal of Polar Research, Variability of Cloud Fraction Cover in the Arctic,
2022, 34(3): 265-277. 1982− 2009[J]. Theoretical and Applied Clima⁃
[51] DONG X Q , ZIB B J, XI B K , et al. Critical tology , 2018, 132(3): 739-749.
Mechanisms for the Formation of Extreme Arctic [55] FU Y H, LIU P, TANG M Y. The Arctic Sea Ice-
Sea-Ice Extent in the Summers of 2007 and 1996 Cloud Radiative Negative Feedback in the Barents
[J]. Climate Dynamics, 2014, 43(1): 53-70. and Kara Sea Region[J]. Theoretical and Applied
[52] WANG Z, WALSH J, SZYMBORSKI S, et al. Climatology, 2022, 150(1): 1-11.
Rapid Arctic Sea Ice Loss on the Synoptic Time [56] EASTMAN R, WARREN S G. Interannual Varia⁃
Scale and Related Atmospheric Circulation Anomalies tions of Arctic Cloud Types in Relation to Sea Ice
[J]. Journal of Climate, 2020, 33(5): 1597-1617. [J]. Journal of Climate, 2010, 23(15): 4216-
[53] SERREZE M C, CRAWFORD A D, STROEVE 4232.

