个人简介
唐学远 研究员,
教育背景
1998/09—2005/07 华东师范大学数学系,基础数学,理学硕士
2007/09—2011/01 中国海洋大学海洋环境学院,物理海洋学,理学博士
工作经历
2005.07–2014.12 中国极地研究中心 研究实习员、助理研究员
2014.12–2021.12 中国极地研究中心 副研究员
2021.12-至今 中国极地研究中心 研究员
2022.01–至今 上海交通大学(博士生导师)
2020-至今 中国极地研究中心“极地冰盖多圈层相互作用与气候变化团队”负责人(PI)
出访及挂职经历
2008.11-2009.1 法国国家科学研究中心(CNRS)法国冰川和环境地球物理试验室(LGGE),访问学者
科研项目
【1】国家自然科学基金面上项目“基于深度学习和冰盖模式的南极冰盖内部等时层自动提取及其机制研究”(No.42276257,2023.01 - 2026.12,主持);
【2】国家自然科学基金极地基础科学前沿专项“南极冰盖深部结构、冰下过程及其对海平面的影响”(No.41941006,2020.1.1-2023.12.31,课题负责人);
【3】国家重点研发计划“重大自然灾害监测预警与防范”专项“三极环境与气候变化重大科学问题预研究”课题二“南极冰-海-气-生态变异及其与北极和第三极的关联”(No. 2019YFC1509102,2020. 01- 2022.12 ,子课题负责人);
【4】国家自然科学面上基金项目“基于机载冰雷达探测和三维各向异性耦合冰盖模式的东南极伊丽莎白公主地冰下水热环境研究” (No.41876230,2019.01-2022.12,主持);
【5】国家自然科学面上基金“基于冰雷达探测与高阶冰盖数值模式的Dome A昆仑站深冰芯钻探区域的冰盖动力学研究”(No.41376192, 2014.01-2017.12,主持);
【6】 国家自然科学基金“东南极Dome A(昆仑站)冰层深度-年代关系的数值模拟研究” (No.40906101,2010.01-2012.12,主持);
【7】上海市自然科学基金“东南极冰盖昆仑站地区雷达内部等时层和信号空白区的功率谱梯度变化定量化分类” (13ZR1445300, 2013.07-2016.06,主持);
【8】 国家重点基础研究发展计划(973计划)项目《冰冻圈变化及其影响研究》第四课题:极地冰雪关键过程及其对气候的响应机理(No.2013CBA01804,2013.01-2017.12,骨干);
【9】国家重点基础研究发展计划(973计划)项目“近百年极地冰层和全球及典型区域海平面变化机理精密定量研究”第二课题:极地冰盖变化不稳定性及其对全球海平面的影响机制研究(No. 2012CB957702,2012.01-2016.12,骨干);
【10】国家重点研发计划项目“高海拔环境科考站辅助值守机器人”课题“机器人高海拔科考任务应用”(2018YFB1307504,2019.06 -2022.05,骨干)。
软件版权登记及专利
[1]一种极地冰雪道路内嵌式压力检测装置(实用新型),专利号:CN214883180U,发明人:肖恩照,唐学远(2021.11.26公开)。
[2]一种寒区水流导向装置(实用新型),专利号:CN214883363U,发明人:唐学远、肖恩照、胡正毅(2021.11.26公开)。
[3]一种便于冰雪融化的加热装置,专利号:CN214883362U,发明人:唐学远、肖恩照,郭井学,李霖(2021.11.26公开)。
[4]一种冰面暖热车,授权号:CN214993472U,发明人:肖恩照,唐学远。
近期论文
查看导师新发文章
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[1]Tang Xueyuan*, Sheng Dong, Kun Luo, Jingxue Guo, Lin Li, and Bo Sun.Noise Removal and Feature Extraction in Airborne Radar Sounding Data of Ice Sheets.Remote Sensing,2022,14(2): 399. https://doi.org/10.3390/rs14020399.
[2]Xu, Derui, Xueyuan Tang*, Shuhu Yang, Yun Zhang, Lijuan Wang, Lin Li, and Bo Sun. 2022. Revisiting Ice Flux and Mass Balance of the Lambert Glacier–Amery Ice Shelf System Using Multi-Remote-Sensing Datasets, East Antarctica.Remote Sensing 14(2): 391. https://doi.org/10.3390/rs14020391.
[3]Junjun Yang,Jingxue Guo*,Jamin S. Greenbaum,Xiangbin Cui,Liangcheng Tu,Lin Li,Lenneke M. Jong,Xueyuan Tang,Bingrui Li,Donald D. Blankenship,Jason L. Roberts,Tas van Ommen,Bo Sun(2021). Bathymetry beneath the Amery ice shelf, East Antarctica, revealed by airborne gravity. Geophysical Research Letters, 48(24), e2021GL096215. https://doi.org/10.1029/2021GL096215
[4]Sheng Dong, Xueyuan Tang*, Jingxue Guo, Lei Fu*, Xiaofei Chen, and Bo Sun,EisNet: Extracting Bedrock and Internal Layers from Radiostratigraphy of Ice Sheets with Machine Learning,IEEE Transactions on Geoscience and Remote Sensing ,2021,doi:10.1109/TGRS.2021.3136648
[5]唐学远, 孙波, 马红梅, 赵励耘, 乔刚, 田一翔, 郭井学, 崔祥斌, 李霖. 南极冰盖深部结构、冰下过程及其对冰盖稳定性和海平面的影响[J]. 极地研究, 2021, 33(4): 604-611.
[6] Li Lin; Tang Xueyuan*; Guo, J.; Cui,X.; Xiao, E.; Latif, K.; Sun, B.; Zhang,Q.; Shi, X. Inversion of Geothermal Heat Flux under the Ice Sheet of Princess Elizabeth Land, East Antarctica. Remote Sens. 2021, 13, 2760. https://doi.org/10.3390/rs13142760.
[7]Ran, J., Ditmar, P., Liu, L., Xiao, Y.,Klees, R., & Tang, X. (2021). Analysis and mitigation of biases in Greenland ice sheet mass balance trend estimates from GRACE mascon products. Journal of Geophysical Research: Solid Earth,126, e2020JB020880. https://doi.org/10.1029/2020JB020880
[8] Yang W, Dou Y, Zhao B, Guo J, Tang Xueyuan, Zuo G, Wang Y, Chen Y, Zhang Y(2021). Inversion for the density–depth profile of Dome A, East Antarctica, using frequency-modulated continuous wave radar. Journal of Glaciology 1–15. https://doi.org/10.1017/jog.2021.70
[9]孙波,唐学远*,肖恩照,时小松,程绪宇,李霖,魏福海,张体军.2021南极机场冰雪跑道工程技术发展现状与展望.中国工程科学:23(2),DOI 10.15302/J-SSCAE-2021.02.022
[10]Tang Xueyuan, Sun B. Towards an integrated study of subglacial conditions in Princess Elizabeth Land, East Antarctica. Adv Polar Sci, 2021, 32(2): 75-77, doi: 10.13679/j.advps.2021.0002
[11]Tang Xueyuan, Sun Bo, Wang Tian-Tian,Internal layering structure and subglacial conditions along a traverse line from Zhongshan Station to Dome A, East Antarctica, revealed by ground-based radar sounding,APPLIED GEOPHYSICS,2020,17,4:870-878,doi:10.1007/s11770-020-0866-y
[12]Luo Kun, Liu Sixin, Guo Jingxue, Wang Tiantian, Li Lin, Cui Xiangbin, Sun Bo;,Tang Xueyuan*. Radar-Derived Internal Structure and Basal Roughness Characterization along a Traverse from Zhongshan Station to Dome A, East Antarctica. Remote Sens. 2020, 12(7), 1079; https://doi.org/10.3390/rs12071079.
[13]Tang, Xueyuan, Bo Sun, and Tiantian Wang. "Radar isochronic layer dating for a deep ice core at Kunlun Station, Antarctica." Science China-earth Sciences 63.2 2020: 303-308.
[14]唐学远, 孙波, 王甜甜. 2020. 南极冰盖昆仑站深冰芯的雷达内部等时层定年. 中国科学: 地球科学, 50: 274–280.
[15]Xueyuan Tang, Jingxue Guo, Yinke Dou, Yuzhong Zhang, Siyuan Cheng, Kun Luo, Lejiang Yu, Xiangbin Cui, Lin Li, Shengkai Zhang, Bo Sun, Glaciological and meteorological conditions at Chinese Taishan Station, East Antarctica, Frontiers in Earth Science,2020, 8:250. doi: 10.3389/feart.2020.00250。
[16]Jingxue Guo, Wangxiao Yang, Yinke Dou, Xueyuan Tang,Jamin S. Greenbaum, Ruofan Dou, Yao Pan, Yuzhong Zhang,Minghu Ding, Su Jiang, Guitao Shi, Xiangbin Cui and Bo Sun. Historical surface mass balance from a frequency-modulated continuous-wave (FMCW) radar survey from Zhongshan station to Dome A. Journal of Glaciology,2020,https://doi.org/10.1017/jog.2020.58
[17] Guitao Shi , Jiajue Chai, Zhuoyi Zhu, Zhengyi Hu, Zhenlou Chen, Jinhai Yu , Tianming Ma, Hongmei Ma, Chunlei An , Su Jiang, Xueyuan Tang, and Meredith G. Hastings (2019). Isotope fractionation of nitrate during volatilization in snow: A field investigation in Antarctica. Geophysical Research Letters, 46. https://doi.org/ 10.1029/2019GL081968
[18]Siyuan Cheng, Sixin Liu, Jingxue Guo, Kun Luo, Ling Zhang and Xueyuan Tang*.Data Processing and Interpretation of Antarctic Ice-Penetrating Radar Based on Variational Mode Decomposition. Remote Sensing. 2019, 11, 1253. https://doi.org/10.3390/rs11101253
[19]张宇中 唐学远* 窦银科 郭井学 左广宇. 东南极冰盖泰山站雪层垂直温度分布特征研究[J]. 极地研究, 2019, 31(4): 413-420.
[20]Liyun Zhao, John C. Moore, Bo Sun, Xueyuan Tang, and Xiaoran Guo Where is the 1-million-year-old ice at Dome A?, 2018.The Cryosphere, 12, 1651-1663.