
男,1989.03,理学博士,副教授,硕士生导师,2019年博士毕业于中国科学院大学(中国科学院地理科学与资源研究所),目前任职于计算机与信息工程学院*空间信息科学与工程系。入选“福建省高层次人才(C类)”、“福建省2019届教育科研类引进生”;获得2019年度北京市优秀毕业生和中国科学院大学优秀毕业生。从事资源环境遥感和时空大数据应用研究,发表学术论文20余篇,其中被SCI检索的第一作者或通讯作者论文8篇。
邮箱:lilh@xmut.edu.cn
工作经历:
· 2019/08 - 至今,厦门理工学院,计算机与信息工程学院*空间信息科学与工程系
科研项目:
· 国家自然青年基金——青藏高原高寒植被对人类活动压力变化的敏感性及其空间差异研究(主持,2022-2024)
· 国家自然地区基金——鄱阳湖地区耕地非粮化的过程机理及其对粮食产能的影响(参与(>20%),2022-2025)
· 福建省自然科学基金计划项目——南方地区水稻熟制的变化特征及其对农村劳动力变化的响应(主持,2020-2023)
· 第二次青藏高原综合科学考察 (参与,2017-)
· 中科院战略性先导科技专项A子课题——土地覆被变化机制与关键区识别(参与,2018-2022年)
· 国家自然面上基金——黄河源地区高寒草地放牧活动的空间异质性及其对草地退化的影响(参与,2016-2020年)
· 国家自然青年基金——青藏高原高寒草地物候变化特征及其对水热变化的响应(参与,2013-2015年)
发表论文:
第一作者/通讯作者:
[1] Li Lanhui, Zhang Yili*, Wu jianshuang, et al., Increasing sensitivity of alpine grasslands to climate variability along an elevational gradient on the Qinghai-Tibet Plateau. Science of The Total Environment (2019). 678, 21-29. (1区(Top), IF(2019) = 6.551);
[2] Li Lanhui, Zhang Yili, Liu Linshan*, et al. Mapping Changing Population Distribution on the Qinghai–Tibet Plateau since 2000 with Multi-Temporal Remote Sensing and Point-of-Interest Data. Remote Sensing, 2020,12(24),4059. (2区, IF(2019) =4.509);
[3] Ding Mingjun, Guan Qihui, Li Lanhui*, et al. Phenology-Based Rice Paddy Mapping Using Multi-Source Satellite Imagery and a Fusion Algorithm Applied to the Poyang Lake Plain, Southern China. Remote Sensing, 2020,12(6),1022. (2区, IF(2019) =4.509);
[4] Li Lanhui, Zhang Yili*, Liu Qionghuan, et al. Regional differences in trend shifts of temperature warming in China during 1980-2017, International Journal of Climatology (2019), 39(3) 1157-1165. (2区, IF(2019) = 3.928)
[5] Li Lanhui, Zhang Yili*, Liu Linshan, et al. Spatiotemporal patterns of vegetation greenness change and associated climatic and anthropogenic drivers on the Tibetan Plateau during 2000–2015, Remote Sensing (2018), 10(10): 1525. (2区, IF(2019) =4.509);
[6] Li Lanhui, Zhang Yili*, Liu Linshan, et al. Current Challenges in Distinguishing Climatic and Anthropogenic Contributions to Alpine Grassland Variation on the Tibetan Plateau, Ecology and Evolution (2018), 8:5949–5963.(2区, IF(2019) = 2.392)
[7] Li Lanhui, Zhang Yili*, Qi Wei, et al. No Significant Shift of Warming Trend over the Last Two Decades on the Mid-South of Tibetan Plateau. Atmosphere, 2019, 10(7), 416.(4区, IF(2019) = 2.397)
[8] Zhang Huamin, Ding Mingjun, Li Lanhui*, et al. Continuous Wetting on the Tibetan Plateau during 1970–2017. Water, 2019,11(12),2605. (3区, IF(2019) = 2.544)
[9] 李兰晖, 丁明军*, 黄齐等, 亚热带湖滨沙地典型下垫面土壤水分变化, 生态学报 (2017) 3892-3901.
[10] 李兰晖, 刘琼欢, 张镱锂*等, 羌塘高原降水空间分布及其变化特征, 地理研究 (2017) 2047-2060.
[11] 李兰晖, 刘林山, 张镱锂*等, 青藏高原高寒草地物候沿海拔梯度变化的差异分析, 地理研究 (2017) 26-36.
[12] 李兰晖, 丁明军*, 郑林等, 鄱阳湖沙化地区不同下垫面土壤水分动态, 水土保持通报(2014) 213-217.
第二作者:
[13] Ding Mingjun, Li Lanhui, Zhang, Yili*, et al. Start of vegetation growing season on the Tibetan Plateau inferred from multiple methods based on GIMMS and SPOT NDVI data, Journal of Geographical Sciences (2015), 25(2): 131-148. (2区, IF(2019) = 2.851);
[14] Ding, Mingjun, Li Lanhui, Nie, Yong, et al. Spatio-temporal variation of spring phenology in Tibetan Plateau and its linkage to climate change from 1982 to 2012, Journal of Mountain Science (2016), 13(1): 83-94.(4区, IF(2019) = 1.550)
[15] 丁明军, 李兰晖, 张镱锂*等, 1971-2012年青藏高原及周边地区气温变化特征及其海拔敏感性分析, 资源科学 (2014) 1509-1518.
[16] 张镱锂*, 李兰晖, 丁明军, 郑度, 新世纪以来青藏高原绿度变化及动因, 自然杂志 (2017) 173-178;
其他:
[17] Paudel, B.; Zhang, Y.; Yan, J.; Rai, R.; Li, L. Farmers' perceptions of agricultural land use changes in Nepal and their major drivers. J. Environ. Manage. 2019, 235, 432-41.
[18] Liu, Q.; Zhang, Y.; Liu, L.; Li, L.; Qi, W. The spatial local accuracy of land cover datasets over the Qiangtang Plateau, High Asia. 2019, 29.
[19] Liu, Q.; Wang, X.; Zhang, Y.; Zhang, H.; Li, L. Vegetation Degradation and Its Driving Factors in the Farming–Pastoral Ecotone over the Countries along Belt and Road Initiative. Sustainability-Basel. 2019, 11, 1590.
[20] Gu, C.; Zhang, Y.; Liu, L.; Li, L.; Zhang, B. Comprehensive Evaluation of the Suitability of Agricultural Land in Myanmar. Journal of Resources and Ecology. 2018, 9, 609-21.
[21] Ding, M.; Chen, Q.; Xiao, X.; Xin, L.; Zhang, G.; Li, L. Variation in Cropping Intensity in Northern China from 1982 to 2012 Based on GIMMS-NDVI Data. Sustainability-Basel. 2016, 8, 1123.
[22] Zhang, H.; Wang, Z.; Zhang, Y.; Ding, M.; Li, L. Identification of traffic-related metals and the effects of different environments on their enrichment in roadside soils along the Qinghai–Tibet highway. Sci. Total Environ. 2015, 521-522, 160-72.
[23] Ding, M.; Chen, Q.; Li, L.; Zhang, Y.; Wang, Z.; Liu, L.; Sun, X. Temperature dependence of variations in the end of the growing season from 1982 to 2012 on the Qinghai–Tibetan Plateau. Gisci. Remote Sens. 2015, 53, 147-63.
[24]时光训; 刘健; 马力; 李兰晖; 陈倩; 张华敏. 1970~2014年长江流域极端降水过程的时空变化研究. 水文. 2017, 37, 77-85.
[25]刘琼欢; 张镱锂; 刘林山; 李兰晖; 祁威. 七套土地覆被数据在羌塘高原的精度评价. 地理研究. 2017, 36, 2061-74.
[26]祁威; 摆万奇; 张镱锂; 吴雪; 李兰晖; 丁明军; 周才平. 生态工程实施对羌塘和三江源国家级自然保护区植被净初级生产力的影响. 生物多样性. 2016, 24, 127-35.
[27]丁明军; 陈倩; 辛良杰; 李兰晖; 李秀彬. 1999-2013年中国耕地复种指数的时空演变格局简. 地理学报. 2015.
[28]张镱锂; 胡忠俊; 祁威; 吴雪; 摆万奇; 李兰晖; 丁明军; 刘林山; 王兆锋; 郑度. 基于NPP数据和样区对比法的青藏高原自然保护区保护成效分析. 地理学报. 2015, 70, 1027-40.