Papers published in 2021

publisher:POGOCrelease time:2023-12-05browse number:17


[1Jialiang Zhu, Yilin Liu, Xiao Yu Wang, Tao Li*, 2021, Optical properties and surface energy flux of spring fast ice in the Arctic, Acta Oceanol. Sin, 40(10): 84-96.

[2] Qiu, Zexia, Wang, Hangzhou*, Li, Tao, Song, Hong, Wu, Yuanqian, Yan, Tingting, Chen, Ying, 2021, Measuring solar irradiance profiles in the Arctic sea ice using fiber optic spectrometry via inclined holes, Acta Oceanologica Sinica, 40(3): 134-141.

[3] Zhang Jingwei, Zhu Jialiang, Yao Yubin, Li Shujiang, Li Xiang, Li Tao*, 2021, Physical and optical properties of the first-year ice in the Amundsen Gulf of the Arctic[J]. Haiyang Xuebao, 43(7):138151doi:10.12284/hyxb2021153

[4] Ouyang, Z., Qi, D., Zhong, W., Chen, L., Gao, Z., Lin, H., et al. , 2021, Summertime evolution of net community production and CO2 flux in the western Arctic Ocean. Global Biogeochemical Cycles, 35, e2020GB006651. https://doi. org/10.1029/2020GB006651

[5] Wang, X., Zhao, J., Hattermann, T., Lin, L., & Chen, P. , 2021, Transports and Accumulations of Greenland Sea Intermediate Waters in the Norwegian Sea. Journal of Geophysical Research: Oceans, 126, e2020JC016582.  https://doi.org/10.1029/2020JC016582.

[6] Wang, X., Zhao, J., Lobanov, V. B., Kaplunenko, D., Rudykh, Y. N., He, Y., & Chen, X, 2021,  Distribution and transport of water masses in the East Siberian Sea and their impacts on the Arctic halocline. Journal of Geophysical Research: Oceans, 126, e2020JC016523.  https://doi.org/10.1029/2020JC016523

[7] Zhang Z L, Zhao J P, Bian L G, 2021, Characteristics and spatial distribution of strong warming events in the central Arctic (2000–2019). Adv Polar Sci, 32(2): 78-95, doi: 10.13679/j.advps.2021.0001

[8] Gao Lin, Jinping Zhao, Shimin Li, Xiutao Fan, and Shixuan Liu, 2021, The heat-insulation and heat-dissipation processes in the summer Nordic seas, Journal of Ocean University of China, 20 (6): 1297-1306. https://doi.org/10.1007/s11802-021-4638-y

[9] MU, L., and WANG, X, 2021, Improvements on the simulation of the upper ocean hydrography from 2007 to 2018 in the Eurasian Basin. Advances in Climate Change Research. https://doi.org/10.1016/j.accre.2021.12.004

[10] 陶树豪, 杜凌*, 2021, 海冰快速减退背景下大气动量输入对波弗特流涡长期变化的影响. 海洋学报, 43(7), 100-113.

[11] Liang, H., & Su, J*, 2021, Variability in sea ice melt onset in the Arctic Northeast Passage: Seesaw of the Laptev Sea and the East Siberian Sea. Journal of Geophysical Research: Oceans, 126, e2020JC016985

[12] 曹淑涛苏洁*李涛钟文理王晓宇,牟龙江,  2021,基于Icepack海冰柱模式的融池反照率模拟研究,海洋学报,43(7)63-74.

[13] 尹豪苏洁*,程斌, 2021,积雪密度演变对北极积雪深度模拟的影响,海洋学报,43(7)75-89.

[14] Lin Long, He Hailun, Cao Yong, Li Tao, Liu Yilin, Wang Mingfeng, 2021, Oceanic vertical mixing of the lower halocline water in the Chukchi Borderland and Mendeleyev Ridge. Acta Oceanologica Sinica, 40(11): 39-49, doi: 10.1007/sl3131-021-1825-z

[15] Qu W , Huang F , Zhao J ,Du L, Cao Y., 2021, Volcanic activity sparks the Arctic Oscillation[J]. Scientific Reports, 11(1). doi: 10.1038/s41598-021-94935-6

[16] 毕瀚文, 李一国, 罗浩恒,曹勇*, 陈旭, 孟静, 2021, 不同流速下冰融化率的实验室探究[J]. 水动力学研究与进展:A, 36(6):6.

[17] Jing W, Luo Y, 2021, Volume Budget of Subantarctic Mode Water in the Southern Ocean by an Ocean General Circulation Model. Journal of Geophysical Research: Oceans, 126, e2020JC017040. https://doi.org/10.1029/2020JC017040.

[18] Liu F, Luo Y, Lu J, Wan X., 2021, The role of ocean dynamics in the cross-equatorial energy transport under a thermal forcing in the Southern Ocean. Advances in Atmospheric Sciences, https://doi.org/10.1007/s00376-021-1099-6.

[19] Hou S, Shi J, 2021, Variability and Formation Mechanism of Polynyas in Eastern Prydz Bay, Antarctica. Remote Sens., 13, 5089. doi:10.3390/rs13245089.

[20] Guo G, Gao L, Shi J, 2021, Modulation of dense shelf water salinity variability in the western Ross Sea associated with the Amundsen Sea Low[J]. Environmental Research Letters, 16(1):014004. doi: 10.1088/1748-9326/abc995.

[21] 高立宝,郭桂军,史久新. , 2021, 跨南大洋经向断面的大气垂直剖面特征研究,海洋科学进展,39(02): 255-267.

[22] Li Z, England M, Groeskamp S, Cerovecki I, Luo Y, 2021, The Origin and Fate of Subantarctic Mode Water in the Southern Ocean. Journal of Physical Oceanography, 51: 2951-2972. DOI: https://doi.org/11.1175/JPO-D-20-0174.1

[23] 倪旭彬, 杜凌*, 史荒原., 2021, 大尺度环流异常对南极印度洋扇区海表面高盐异常的影响. 海洋学报, 43(7), 23-34.

[24] Guanghua Hao, Jie Su*, Qinghua Yang, Long Lin, Shutao Cao., 2021, Analysis and comparison of heat flux of landfast ice during 2016 in Prydz Bay, Antarctica [J]. Acta Oceanologica Sinica. 40(5), 70-79. doi: 10.1007/s13131-021-1731-4 

[25] Wang, J. P., J. A. Church*, X. B. Zhang*, and X. Y. Chen, 2021, Reconciling global mean and regional sea level change in projections and observations.Nature Communications, 12, 990, doi.org/10.1038/s41457-021021265-6.

[26] Chen, X. Y., and K.-K. Tung*., 2021, Comments on “On the relationship between Atlantic meridional overturning circulation slowdown and global surface warming”. Environmental Research Letter, 16, 038001, https://doi.org/10.1088/1748-9326/abc775.

[27] Li Q, Luo Y, Liu F, 2021, Asymmetric responses of the meridional ocean heat transport to climate warming and cooling in CESM. Climate Dynamics, 58: 961–979. https://doi.org/10.1007/s00382-021-05948-w. 

[28] 丁瑞昌黄菲*, 2021, 北极超强气旋活动及其大气环流特征,海洋学报, 43(7)114–124QU Weizheng, Fei Huang, Jinping Zhao, Ling Du and Yong Cao, 2021: Volcanic activity sparks the Arctic Oscillation, Scientific Reports, 11:15839, oi.org/10.1038/s41598-021 -94935-6

[29] 张书萌黄菲*, 2021, 北欧海大气低空辐合辐散的东西振荡模态及其相应的大气遥相关异常环流,中国海洋大学学报(自然科学版),51(4): 1-12.

[30] 黄菲*,孙治宏,王宏2021:北极高密集度冰区海冰的多时间尺度变化特征及其极端低值事件分析,中国海洋大学学报(自然科学版),512):1-9

[31] Haihua Chen; Lele Li; Lei Guan*, 2021, Cross-calibration of brightness temperature obtained by FY-3B/MWRI using Aqua/AMSR-E data for snow depth retrieval in the Arctic, Acta Oceanologica Sinica, 40(1): 43-53. doi:10.1007/s13131-021-1717-2.

[32] Lele Li, Haihua Chen, and Lei Guan, 2021, Retrieval of Snow Depth on Arctic Sea Ice from the FY3B/MWRI. Remote Sensing. 13(8): 1457. doi:10.3390/rs13081457.

[33] Hao H., Su Jie, Shi Q., Li Lele, 2021, Arctic Sea Ice Concentration Retrieval using DT-ASI algorithm based on FY3B/MWRI data, Acta Oceanologica Sinica, 40(9): 1–13, doi: 10.1007/s13131-021-1839-6.

[34] Lu Han, Lele Li* and Haihua Chen, 2021, Evaluation of the significant wave height from HY2B/ALT using CryoSat2/SIRAL and ICESat2/ATLAS data sets in the Arctic. IGARSS 2021. 7572-7575.

[35] Liu, N., Chen Haihua*, Ni, K., Li Lele, 2021, Retrieval of thin ice thickness from FY-3D/MWRI brightness temperature in the Arctic. IGARSS 2021.5637-5640.

[36] Qian Shi, Jie Su*, George Heygster, Jiuxin Shi, Lianzhong Wang, Lizhong Zhu, Quanli Lou, and Valentin Ludwig, 2021, Step-by-step validation of Antarctic ASI AMSR-E Sea-Ice Concentrations by MODIS and Aerial Image, Transactions on Geoscience and Remote Sensing, 59(1), 392-403.

[37] Qin, Y. Su, J*., Wang, M., 2021, Melt Pond Retrieval Based on the LinearPolar Algorithm Using Landsat Data. Remote Sensing.  13, 4674.

[38] Ren, X., Jiang, P., Liu, Z., Liang, Y., Li, J., 2021, Kaistella gelatinilytica sp. nov., a flavobacterium isolated from Antarctic soil. International Journal of Systematic and Evolutionary Microbiology71(3), 004753.

[39] Liang, Y., Jiang, P., Yao, B., Jiao, Y., Li, J., 2021, Lacisediminihabitans changchengi sp. nov., an actinobacterium isolated from Antarctic swamplands mud. Archives of Microbiology203(9), 5519-5524.

[40] Kirstin Meyer‑Kaiser*, Hongju Chen, Xiaoshou Liu, Samuel R. Laney, 2021, Oceanographic influence on the early life‑history stages of benthic invertebrates during the polar night. Polar Biology, 44 (9): 1781-1793.

[41] Guoliang Zhou, Chunxiao Sun, Xuewen Hou, Qian Che, Guojian Zhang, Qianqun Gu, Chenguang Liu, Tianjiao Zhu*, Dehai Li*, 2021, Ascandinines A-D, Indole Diterpenoids from the Sponge-derived Fungus Aspergillus candidus HDN15-152. J. Org. Chem. 2021, 86, 2431–2436.

[42] Liping Li, Zhongwei Duan, Donghui Bai, Fang Lu, Jiejie Hao, Tianjiao Zhu*, Deihai Li*, 2021, Design, synthesis and lipid-lowering activities of penipyridone derivatives. Bioorg. Med. Chem. 40, 116192-116203.

[43] Gao, Chen; Xia, Jun; Zhou, Xinhao; Liang, Yantao*; Jiang, Yong; Wang, Meiwen; Shao, Hongbing; Shi,Xiaochong; Guo, Cui; He, Hui; Wang, Hualong; He, Jianfeng; Hu, Denghui; Wang, Xiaoyu; Zhao, Jinping; Zhang,Yu-Zhong; Yeong Yik Sung; Wen Jye Mok; Wong, Li Lian; Andrew McMinn,; Curtis A. Suttle,; Wang, Min*, 2021, Viral Characteristics of the Warm Atlantic and Cold Arctic Water Masses in the Nordic Seas. Applied and Environmental Microbiology, 87(22)0-e0116021. 

[44] 郭培清,宋晗,北极海冰消融背景下《联合国海洋法公约》第234条的解释和适用争议及对中国的启示,《太平洋学报》,2021年第12

[45] 郭培清,厉召卿,对峙与合作:北极安全态势分析,《中国海洋大学学报(社会科学版)》,2021年第4期

[46] 郭培清,俄罗斯北方航道的战略价值及面临的挑战,《人民论坛》,2021-05-05

[47] 郭培清,杨楠,俄罗斯对北方航道矛盾的管理制度,《俄罗斯研究》,2021年第1期

[48] 孙凯,张现栋,美俄北极军事安全博弈态势及其走向,《边界与海洋研究》,2021年第6

[49] 孙凯,张现栋,双层博弈视角下丹麦政府的北极政策,《中国海洋大学学报(社会科学版)》,2021年第5期

[50] 孙凯,耿嘉辉,特朗普政府北极事务“安全化”政策及其实践,《美国研究》,2021年第3期

[51] 刘惠荣,齐雪薇,设立南极海洋保护区的法律困境与出路:兼谈中国的应对,《海洋开发与管理》,2021年第4期

[52] 张志军刘惠荣,当前国际法跨学科人才培养的新任务新课题——基于深海、极地、外空、网络等“战略新疆域”的思考,《人民论坛•学术前沿》,2021-02-08

[53] 白佳玉,《斯匹次卑尔根群岛条约》公平制度体系下的适用争论及其应对,《当代法学》,2021年第6期

白佳玉,可持续发展视域中的北极航运重油管控趋向及中国应对,《东岳论丛》,2021年第10