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个人简介

国科学院地理科学与资源研究所副研究员。1974年11月生于江西省赣州市。1997年毕业于中南工业大学(现中南大学),获工学学士学位;2000年毕业于中南工业大学(现中南大学),获工学硕士学位;2005年毕业于中国科学院地理科学与资源研究所,获理学博士学位。2005年7月至2009年2月期间,先后在中国科学院地理科学与资源研究所、美国普度大学(Purdue University)、瑞典皇家工学院(KTH - Royal Institute of Technology)从事博士后/访问学者研究。2017年,获测绘科技进步奖一等奖(研发方排名第一,总排名第二)。

研究领域

主要从事卫星遥感土地变化探测、生态环境监测与评价、农业信息化等相关研究

近期论文

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[1]DAI Z X, GULDMANN J M, HU Y F*. Thermal impacts of greenery, water, and impervious structures in Beijing’s Olympic area: A spatial regression approach[J]. Ecological Indicators, 2019, 97(2): 77-88. [2]Hu Y F*, Hu Y. Land Cover Changes and Their Driving Mechanisms in Central Asia from 2001 to 2017 Supported by Google Earth Engine[J]. Remote Sensing.2019,11(5). [3]HU Y F*, BATUNACUN, ZHEN L, ZHUANG D F. Assessment of Land-Use and Land-Cover Change in Guangxi, China[J]. Scientific Reports, 2019, 9. [4]HU Y F*, ZHANG Q L, ZHANG Y Z, YAN H M. A Deep Convolution Neural Network Method for Land Cover Mapping: A Case Study of Qinhuangdao, China[J]. Remote Sensing, 2018, 10(12). [5]HU Y F*, HAN Y Q, ZHANG Y Z. Information Extraction and Spatial Distribution of Research Hot Regions on Rocky Desertification in China[J]. Applied Sciences-Basel, 2018, 8(11). [6]HU Y F*, DONG Y, BATUNACUN. An automatic approach for land-change detection and land updates based on integrated NDVI timing analysis and the CVAPS method with GEE support[J]. ISPRS Journal of Photogrammetry and Remote Sensing, 2018, 146: 347-359. [7]HU Y F*, BATUNACUN. An Analysis of Land-Use and Land-Cover Change in the Zhujiang-Xijiang Economic Belt, China, from 1990 to 2017[J]. Applied Sciences-Basel, 2018, 8(9). [8]DAI Z X, GULDMANN J M, HU Y F*. Spatial regression models of park and land-use impacts on the urban heat island in central Beijing[J]. Science of the Total Environment, 2018, 626: 1136-1147. [9]BATUNACUN, NENDEL C, HU Y F, LAKES T. Land-use change and land degradation on the Mongolian Plateau from 1975 to 2015-A case study from Xilingol, China[J]. Land Degradation & Development, 2018, 29(6): 1595-1606. [10]HU Y F*, LIU J Y, BATUNACUN, ZHEN L. Determination of Cs-137 reference inventories in a large-scale region: A case study in the central-eastern Inner Mongolia Plateau[J]. Journal of Geographical Sciences, 2014, 24(6): 1047-1059. [11]ZHANG Q, HU Y F*, LIU J Y, LIU Y, REN W B, LI J. A quantitative assessment of the distribution and extent of urban clusters in China[J]. Journal of Geographical Sciences, 2012, 22(1): 137-151. [12]LIU J Y, ZHANG Q, HU Y F*. Regional differences of China's urban expansion from late 20th to early 21st century based on remote sensing information[J]. Chinese Geographical Science, 2012, 22(1): 1-14. [13]CUI Y P, LIU J Y, HU Y F, WANG J B, KUANG W H. Modeling the radiation balance of different urban underlying surfaces[J]. Chinese Science Bulletin, 2012, 57(9): 1046-1054. [14]ZHANG X Y, HU Y F*, ZHUANG D F, QI Y Q, MA X. NDVI spatial pattern and its differentiation on the Mongolian Plateau[J]. Journal of Geographical Sciences, 2009, 19(4): 403-415. [15]QI Y Q, LIU J Y, SHI H D, HU Y F, ZHUANG D F. Using Cs-137 tracing technique to estimate wind erosion rates in the typical steppe region, northern Mongolian Plateau[J]. Chinese Science Bulletin, 2008, 53(9): 1423-1430. [16]LIU J Y, QI Y Q, SHI H D, ZHUANG D F, HU Y F. Estimation of wind erosion rates by using Cs-137 tracing technique: A case study in Tariat-Xilin Gol transect, Mongolian Plateau[J]. Chinese Science Bulletin, 2008, 53(5): 751-758. [17]HU Y F*, LIU J Y, ZHUANG D F, CAO H X, YAN H M, YANG F T. Distribution characteristics of (CS)-C-137 in wind-eroded soil profile and its use in estimating wind erosion modulus[J]. Chinese Science Bulletin, 2005, 50(11): 1155-1159. [18]胡云锋, 巴图娜存, 毕力格吉夫, 刘纪远, 甄霖. 乌兰巴托—锡林浩特样带草地植被特征与水热因子的关系[J]. 生态学报, 2015, 35(10): 3258-3266. [19]胡云锋, 刘纪远, 巴图娜存, 甄霖. 内蒙古中东部地区~(137)Cs背景值的确定[J]. 地理学报, 2014, 69(03): 343-352. [20]胡云锋, 刘纪远, 庄大方, 曹红霞, 闫慧敏, 杨风亭. 风蚀土壤剖面(137)~Cs的分布及侵蚀速率的估算[J]. 科学通报, 2005, (09): 933-937. [21]胡云锋, 刘纪远, 庄大方, 曹红霞, 闫慧敏. 不同土地利用/土地覆盖下土壤粒径分布的分维特征[J]. 土壤学报, 2005, (02): 336-339

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