南卓铜 博士/教授 Ph.D. Professor Zhuotong NAN

来源:U8国际发布时间:2021-09-10浏览次数:18

 南卓铜 Zhuotong NAN

 教授( Professor

 陆面过程建模与模拟

 教育背景

 博士(硕博连读),中国科公司寒区旱区环境与工程研究所,自然地理

 学士,兰州大学,自然地理

 Email:nanzt@shnu.edu.cn


南卓铜教授当前主要研究方向为陆表过程集成建模、冻土水文建模等。承担国家863自由探索课题、国家自然科学基金等国家部委项目20余项。已在Earth and Planetary Science Letters、Geophysical Research Letters、Water Resources Research、Earth System Science Data等期刊共发表论文130余篇,Google Scholar总引用5100+次,H-index 36,部分成果被新华网、人民网、凤凰网等媒体报道。曾获2021年度中国地理科学十大研究进展、2016江苏省教育科学研究成果(高校科学技术研究类)自然科学奖(二等)、南京师范大学青蓝工程中青年学术带头人、南京师范大学优秀教师等奖励。ORCID:https://orcid.org/0000-0002-7930-3850;研究团队:https://permalab.science

工作经历

2026.3至今,U8国际,教授

2015.9-2026.2,南京师范大学地理科学公司,教授,博导

2014.6-2015.8,中科院寒旱所寒区旱区科学大数据中心,副主任

2013.11-2014.11,美国匹兹堡大学环境与土木工程系,公派访问学者

2011.1-2015.8,中国科公司寒区旱区环境与工程研究所,研究员,博导(2012.6-)

2007.10-2009.10,美国匹兹堡大学环境与土木工程系,博士后

2005.6-10,美国地质调查局(科罗拉多州丹佛),访问学者

2004.1-2010.12,中国科公司寒区旱区环境与工程研究所,副研究员

学术兼职

2021至今,甘肃省绿洲资源环境与可持续发展重点实验室学术委员会成员;

2017-2026,中国自然资源学会资源持续利用与减灾专业委员会副主任委员;

中国地理信息产业协会理论与方法专业委员会委员;

2021.1至今,中国科公司西北生态环境与资源研究院高级访问学者;

《遥感技术与应用》第6、7、8届编委;

2021.8至今,《Water》编委;

2007-2015,联合国教科文组织国际水文计划“干旱区全球水与发展信息网络”亚洲秘书处秘书;

曾担任Ohio Sea Grant、奥地利FWF、荷兰NWO、国家科学技术奖励、国家留学基金委等网评/通讯专家。

研究项目

  1. 国家自然科学基金面上项目“青藏高原鼠兔扰动对多年冻土水热过程的影响研究”,编号42571149,2026.1.1-2029.12.31,负责人,在研

  2. 科技部“基础科研条件与重大科学仪器设备研发”专项“冰冻圈大数据挖掘分析关键技术及应用”,子课题“冰冻圈关键要素态势演变智能感知模型”,编号2022YFF0711703-02,2022.11-2025.10,子课题负责人,在研

  3. 科技部“第二次青藏高原综合科学考察研究”专题九“冻土冻融灾害及重大冻土工程病害”子专题“南亚通道及喜马拉雅冻土冻融灾害与工程病害遥感信息提取”,编号2019QZKK0905-08,2019.11-2024.10,子专题负责人,结题

  4. 国家自然科学基金重点项目“北半球典型地区多年冻土对全球变化的响应及机理研究”,编号41931180,2020.1.1-2024.12.31,合作单位课题负责人,结题

  5. 国家自然科学基金面上项目“变化气候下的青藏高原多年冻土水热状况变化模拟和预估研究”,编号41971074,2020.1.1-2023.12.31,负责人,结题

  6. 国家重点研发计划项目“全球变化驱动下陆表自然和人文要素相互作用及区域表现”课题“陆表关键要素对全球变化的响应模拟及预估”,编号2017YFA0603603,2017.7-2022.6,子课题负责人,结题

  7. 江苏省高等公司自然科学研究重大项目“面向陆面过程模拟的集成建模环境研究”,17KJA170003,2017.9-2020.8,负责人,结题

  8. 国家自然科学基金面上项目“通过陆面过程模型模拟青藏高原多年冻土关键水热特征”,编号41471059,2015-2018,负责人,结题

  9. 国家科技基础条件平台项目“地球系统科学数据共享平台”课题“寒区旱区科学数据中心运行与服务”(2012-2015),负责人,结题

  10. 国家自然科学基金委重大计划培育项目“服务于黑河流域集成管理的空间决策支持系统”(批准号91125006),负责人,2012-2014,结题

  11. 科技部科技基础性工作专项“青藏高原多年冻土本底调查”课题“青藏高原多年冻土遥感与本底数据共享”负责人,编号2008FY110200-05. 2009-2013,结题

  12. 联合国教科文组织项目. Development of adaptive water resources management in response to extreme hydrological events in Heihe River Basin, Northwestern China. 2013.1-2013.8. PI.结题

  13. 青海省环境监测中心站横向课题“青海湖流域生态环境数据库与网络发布平台”,负责人,2011-2012,结题

  14. 冻土工程国家重点实验室开放基金课题“Noah陆面过程模型热力学参数化方案改进及青藏高原冻土水热状况模拟”,负责人,2011-2012,SKLFSE201009,结题

  15. 中国科公司知识创新工程重要方向项目群“地表过程集成系统研究”项目“地表过程建模环境和模型集成研究”,负责人,编号KZCX2-YW-Q10-1,2009-2011,结题

  16. 科技部863自由探索课题“基于科学模型和三维游戏体验的黑河流域水土资源可持续发展决策支持系统”,负责人, 2008AA12Z205,2008.6-2011.5

  17. 基于GIS的西北干旱区黑河流域水文水资源集成建模环境研究,国家自然科学基金青年基金,40501054,负责人,2006.1-2008.12,37w

  18. 黑河流域土地利用/覆盖变化及水土资源评价决策支持系统,2004.1-2005.12,所创新,编号2004115,负责人南卓铜,祁元

论文著作

  1. Ji H, Nan Z*, Chen Y, Zhao S. Warming and Wetting Drive Upslope and Downslope Vegetation Expansions on the Qinghai-Tibet Plateau. Environmental Research Letters. 2026, 21: 44022. (*表示通讯作者,二区)

  2. Tian W, Yu H, Zhao S*, Cao Y, Yi W, Xu J, Nan Z*. NoahPy: a differentiable Noah land surface model for simulating permafrost thermo-hydrology. Geoscientific Model Development. 2026, 19(1): 57-72. (二区)

  3. Zhao Y, Nan Z*, Ji H, Chen Y, Ou M. A hybrid modeling approach for improved simulation of thermal-hydrological dynamics in permafrost active layer on the Tibet Plateau. Water Resources Research. 2025, 61(e2025WR040288). (TOP)

  4. Hu J, Nan Z*, Ji H, Zhao S, Ou M. Effect of permafrost degradation on grassland net primary productivity in Qinghai-Tibet Plateau. Environmental Research Letters. 2024, 19(10): 104051 (二区)

  5. Chen Y, Nan Z*, Zhao S. Bare Patches Created by Plateau Pikas Contribute to Warming Permafrost on the Tibet Plateau. Geophysical Research Letters. 2024, 51(11): e2024GL108976. (TOP)

  6. Ji H, Fu X, Nan Z*, Zhao S*. An Effective Medium Theory-Based Unified Model for Estimating Thermal Conductivity in Unfrozen and Frozen Soils. Catena. 2024, 239: 107942. (一区)

  7. Cao Z, Nan Z*, Hu J, Chen Y, Zhang Y. A new 2010 permafrost distribution map over the Qinghai-Tibet Plateau based on subregion survey maps: a benchmark for regional permafrost modeling. Earth System Science Data. 2023, 15(9): 3905-3930. (TOP)

  8. Zhao Y, Nan Z*, Cao Z, Ji H, Hu J. Evaluation of parameterization schemes for matric potential in frozen soil in land surface models: A modeling perspective. Water Resources Research. 2023, 59(6): e2023WR034644. (TOP)

  9. Sun Y, Nan Z*, Yang W, Li L. Projecting China's future water footprints and water scarcity under socioeconomic and climate change pathways using an integrated simulation approach. Climate Services. 2023, 30, 100385. (二区)

  10. Chen Y, Nan Z*, Cao Z, Ou M, Feng K. A stepwise framework for interpolating land surface temperature under cloudy conditions based on solar-cloud-satellite geometry. ISPRS JOURNAL OF PHOTOGRAMMETRY AND REMOTE SENSING. 2023, 197: 292-308. (TOP)

  11. Wang Y, Chen H*, Nan Z, Shang Z. Modelling Permafrost Characteristics and Its Relationship with Environmental Constraints in the Gaize Area, Qinghai-Tibet Plateau, China. Remote Sensing. 2022, 14(5610). (二区)

  12. Zhang G, Nan Z*, Hu N, Yin Z, Zhao L, Cheng G, Mu C. Qinghai-Tibet Plateau permafrost at risk in the late 21st century. Earth's Future. 2022, 10(6): e2022E-e2652E. (一区)

  13. Zhao Y, Nan Z*, Ji H, Zhao L. Convective heat transfer of spring meltwater accelerates active layer phase change in Tibet permafrost areas. The Cryosphere. 2022, 16: 825-849. (TOP)

  14. Ji H, Nan Z*, Hu J, et al. On the spin-up strategy for spatially modeling permafrost dynamics: A case study on the Qinghai-Tibet Plateau. Journal of Advances in Modeling Earth Systems. 2022, 14: e2021M002750M. (二区)

  15. Zhang G, Nan Z*, Zhao L. Isolating the contributions of seasonal climate warming to permafrost thermal responses over the Qinghai-Tibet Plateau. Journal of Geophysical Research-Atmospheres. 2021, 126, e2021JD035218. (二区)

  16. Zhang G, Nan Z*, Zhao L, Liang Y, Cheng G. Qinghai-Tibet Plateau wetting reduces permafrost thermal responses to climate warming. Earth and Planetary Science Letters. 2021, 562: 116858. (TOP)

  17. Cao Z, Gao H, Nan Z*, Yin Z, Zhao Y. A semi-physical approach for downscaling soil moisture data in a typical cold alpine area, Northwest China. Remote Sensing. 2021, 13(3): 509. (二区

  18. Chen Y, Nan Z*, Zhao S, Xu Y. A Bayesian approach for interpolating clear-sky MODIS land surface temperatures on areas with extensive missing data. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing. 2021, 14: 515-528. (二区)

  19. Hu J†, Zhao S†, Nan Z*, Wu X, Sun X, Cheng G-D. An effective approach for mapping permafrost in a large area using subregion maps and satellite data. Permafrost and Periglacial Processes. 2020, 31(4): 548-560. (三区)

  20. Zhang G, Nan Z*, Wu X, Ji H, Zhao S. The role of winter warming in permafrost change over the Qinghai-Tibet Plateau. Geophysical Research Letters. 2019, 46(20): 11261-11269. (TOP)

  21. 南卓铜,张宏,潘雪莹,高红侠,赵淑萍. “GIS算法基础课程教学研究. 高等理科教育. 2019(3): 114-120.

  22. Wu X, Nan Z*, Zhao S, Zhao L, Cheng G. Spatial modelling of permafrost distribution and properties on the Qinghai-Tibet Plateau. Permafrost and Periglacial Processes. 2018, 29(2): 86-99. (三区)

  23. Zhang L, Nan Z*, Liang X*, Xu Y, Hernandez F, Li L. Application of the MacCormack Scheme to Overland Flow Routing for High-spatial Resolution Distributed Hydrological Model. Journal of Hydrology. 2018, 558: 421-431. (TOP)

  24. Zhang L, Nan Z*, Yu W, Zhao Y, Xu Y. Comparison of baseline period choices for separating climate and land use/land cover change impacts on watershed hydrology using distributed hydrological models. Science of the Total Environment. 2018, 622-623: 1016-1028.

  25. Zhao S, Nan Z*, Huang Y, Zhao L. The application and evaluation of simple permafrost distribution models on the Qinghai-Tibet Plateau. Permafrost and Periglacial Processes. 2017, 28(2): 391-404. (三区)

  26. 李红星,吴立宗,南卓铜*,王亮绪,王建,赵彦博,张耀南,马瀚青. 科学数据联合出版模式与内容研究. 遥感技术与应用. 2016, 31(04): 801-808.

  27. Zhang L, Nan Z*, Yu W, Ge Y. Hydrological Responses to Land-Use Change Scenarios under Constant and Changed Climatic Conditions. Environmental Management. 2016, 57(2): 412-431. (三区)

  28. Yu W, Nan Z*, Wang Z, Chen H, Wu T, Zhao L. An Effective Interpolation Method for MODIS Land Surface Temperature on the Qinghai-Tibet Plateau. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing. 2015, 8(9): 4539-4550. (二区)

  29. Zhang L., Nan Z.*, Yu W. et al., 2015. Modeling Land-Use and Land-Cover change and hydrological responses under consistent climate change scenarios in the Heihe River Basin, China. WATER RESOUR MANAG, 29(13): 4701-4717. (二区)

  30. Chen H, Nan Z*, Zhao L, Ding Y, Chen J, Pang Q. Noah Modelling of the Permafrost Distribution and Characteristics in the West Kunlun Area, Qinghai-Tibet Plateau, China. Permafrost and Periglacial Processes. 2015, 26(2): 160-174. (三区)

  31. Cao Y., Nan Z*., Cheng G., 2015. GRACE gravity satellite observations of terrestrial water storage changes for drought characterization in the arid land of northwestern China. Remote Sensing, 7: 1021-1047. (二区)

  32. 南卓铜,黄培培,赵林. 青藏高原西部区域多年冻土分布模拟及其下限估算. 地理学报. 2013, 68(3): 318—327.

  33. Nan Z*, Shu L, Zhao Y, et al. Integrated modeling environment and a preliminary application on the Heihe river basin. SCIENCE CHINA E: Technological Sciences. 2011, 54(8): 2145—2156. (一区)

  34. 候玉婷,王书功,南卓铜*. 基于知识规则的黑河流域土地覆盖分类方法. 地理学报. 2011, 66(5): 549—561.

  35. Nan Z.Wang S.Liang X. et al. Analysis of Spatial Similarities between NEXRAD and NLDAS Precipitation Data Products. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing20103(3): 371-385. (二区)

  36. Nan Z.Li S.Cheng G. Prediction of permafrost distribution on the Qinghai-Tibet Plateau in the next 50 and 100 years. Science in China, Ser. D Earth Sciences200548(6): 797-804. (一区)

  37. 南卓铜,高泽深,李述训. 30年来青藏高原西大滩多年冻土变化. 地理学报,200358(6): 817-823.

  38. 南卓铜,李述训,刘永智. 基于年平均地温的青藏高原冻土分布制图及应用. 冰川冻土,200224(2): 142-148.

  39. 南卓铜,赵彦博,周剑,李新. 集成建模环境 (2). 黑河流域模型集成, 程国栋,李新, 北京: 科学出版社, 2019, 31-44.

  40. 赵林,盛煜,南卓铜,吴通华, 周国英. 多年冻土调查手册. 北京: 科学出版社, 2015. p.198. 89章主笔。

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