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Remote Sensing Technology and Application  2012, Vol. 27 Issue (2): 282-288    DOI: 10.11873/j.issn.1004-0323.2012.2.282
    
Monitoring Spatial Patterns of Vegetation Phenology in Heihe River Basin based on Remote Sensing
Yang Yongmin1,2,Tian Jing1,Rong Yuan1,2,Long Aihua3
(1.Key Laboratory of Water Cycle & Related Land Surface Processes,Institute of Geographic Sciences and Natural Resources Research,Chinese Acadmy of Sciences,Beijing 100101,China;2.Key Laboratory of Western Chinas Environmental Systems,Lanzhou University,Lanzhou 730000 China;3.China Institute of Water Resources and Hydropower Research,Beijing 100038,China)
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Abstract  

Monitoring vegetation phenology is very important for many aspects,such as seasonal appearance of plant,crops production,global change,ecological study.Vegetation index is an excellent index for monitoring vegetation appearance.With the development of remote sensing,it has become a new way to extract vegetation phenology.We use the filter of Savitzky-Golay to rebuild the time-series of SPOT Vegetation NDVI,then we extracted the spatial patterns of vegetation phenology in Heihe river basin.The results show:Vegetation phenology information obtained using this method is in good agreement with the farming calendar of this region.Vegetation phenology have clear spatial patterns in Heihe river basin.Arctic-alpine meadow in the upper-stream have shortest growing season.While ,the oasis in the middle-stream have much longer growing season.In the middle-stream,human activities greatly influenced vegetation growth,vegetation phenology is in good agreement with the farming calendar.

Key words:  Phenology      NDVI      Spatial pattern      Time series      SPOT Vegetation     
Received:  28 March 2010      http://westdc.westgis.ac.cn/data/fecdec71-77d1-43c2-b472-8b1c729874cb Published:  23 January 2013
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Yang Yongmin
Tian Jing
Rong Yuan
Long Aihua

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Yang Yongmin,Tian Jing,Rong Yuan,Long Aihua. Monitoring Spatial Patterns of Vegetation Phenology in Heihe River Basin based on Remote Sensing. Remote Sensing Technology and Application, 2012, 27(2): 282-288.

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http://www.rsta.ac.cn/EN/10.11873/j.issn.1004-0323.2012.2.282     OR     http://www.rsta.ac.cn/EN/Y2012/V27/I2/282

[1]Zhu Kezhen,Wan Minwei.Phenology[M].Changsha:Education Press of Hunan Province,1999.[竺可桢,宛敏渭.物候学[M].长沙:湖南教育出版社,1999.]

[2]Fang Xiuqi,Yu Weihong.Progress in the Studies on the Phenology Responding to Globe Warming[J].Advance in Earth Sciences,2002,17(5):714-719.[方修琦,余卫红.物候对全球变暖响应的研究综述[J].地球科学进展,2002,17(5):714-719.]

[3]Wang Licun.Ancient and Mordern Phenology in China[M].Chengdu:Sichuan University Press,1990:174-182.[王梨村.中国古今物候学[M].成都:四川大学出版社,1990:174-182.]

[4]Zhang Xuexia,Ge Quansheng.Overview on the Vegetation Phenology Using the Remote Sensing[J].Advance in Earth Sciences,2003,18(4):534-544.[张学霞,葛全胜.遥感技术在植物物候研究中的应用综述[J].地球科学进展,2003,18(4):534-544.]

[5]Tucker J.Red and Photographic Infrared Linear Combinations for Monitoring Vegetation[J].Remote Sensing of the Enviroment,1979,8:127-150.

[6]Zhao Yingshi.The Theory of Remote Sensing Application[M].Beijing:Science Press in China,2003.[赵英时.遥感应用分析原理与方法[M].北京:科学出版社,2003.]

[7]Xing Zhurong,Feng Yougui,Yang Guijun,et al.Method of Estimating Vegetation Coverage based on Remote Sensing[J].Remote Sensing Technology and Application,2009,24(6):849-854.[邢著荣,冯幼贵,杨贵军,等.基于遥感的植被覆盖度估算方法述评[J].遥感技术与应用,2009,24(6):849-854.]

[8]Wang Hong,Li Xiaobing,Ying Ge,et al.The Methods of Simulating Vegetation Growing Season based on NOAA NDVI[J].Progress in Geography,2006,25(6):21-25.[王宏,李晓兵,莺歌,等.基于NOAA NDVI的植被生长季模拟方法研究[J].地理科学进展,2006,25(6):21-25.]

[9]Lu Ling,Li Xin,Cheng Guodong.Analysis on the Seasonal Phenological Characteristics of the Heihe River Basin with AVHRR NDVI Dataset[J].Journal of Desert Research,2002,22(2):187-191.[卢玲,李新,程国栋.利用NOAA AVHRR植被指数数据集分析黑河流域季候特征[J].中国沙漠,2002,22(2):187-191.]

[10]Deng Zhaoping,Guo Ni,Wang Jiemin,et al.Vegetation Cover Variation in North West China During the Past 22 Years[J].Journal of Glaciology and Geocryology,2006,28(5):686-693.[邓朝平,郭铌,王介民,等.近20余年来西北地区植被变化特征分析[J].冰川冻土,2006,28(5):686-693.]

[11]Yu Rong.Research on Land Cover Change in China based on Remote Sensing Time Series Data[D].Beijing:Institute of Remote Sensing Applications Chinese Academy of Sciences,2006.[于嵘.基于遥感时序数据的中国陆地植被覆盖变化分析研究[D].北京:中国科学院遥感应用研究所,2006.]

[12]Guo Yanfen,Liu Zhihong,Xie Mingyuan.Vegetation Information Extraction in the South Qinhai Plateau Using Phenology and Surpervised Classification[J].Remote Sensing Technology and Application,2009,24(2):223-229.[郭艳芬,刘志红,谢明元.基于植被物候特征与监督分类的青南高原信息提取[J].遥感技术与应用,2009,24(2):223-229.]

[13]Piao Shilong,Fang Jingyun.Terrestrial Net Primary Production and Its Spatio-temporal Patterns in Qinhai-Xizang Plateau,China During 1982-1999[J].Journal of Natural Resources,2002,17(3):373-380.[朴世龙,方精云.1982-1999年青藏高原植被净第一性生产力及其时空变化[J].自然资源学报,2002,17(3):373-380.]

[14]Wen Gang,Fu Congbin.Large Scale Features of the Seasonal Phenological Responses to the Monsoon Climate in East China:Interannuai Variations[J].Climatic and Environmental Research,2001,6(1):1-11.[温刚,符淙斌.中国东部季风区植被物候季节变化对气候响应的大尺度特征:年际比较[J].气候与环境研究,2001,6(1):1-11.]

[15]Li Xiaobing,Wang Ying.NDVI Sensitivity to Seasonal and Interannual Rainfall Variations in Northern China[J].Acta Geographica Sinica,2000,55(Sup.):82-89.[李晓兵,王瑛.NDVI对降水季节性和年际性变化的敏感性[J].地理学报,2000,55(增刊):82-89.]

[16]Ma Mingguo,Dong Lixin,Wang Xuemei,et al.Study on the Dynamically Monitoring and Simulating the Vegetation Cover in Northwest China in the Past 21 Years[J].Journal of Glaciology and Geocryology,2003,25(2):232-236.[马明国,董立新,王雪梅,等.过去21a中国西北植被覆盖动态监测与模拟[J].冰川冻土,2003,25(2):232-236.]

[17]Yang Jianping,Ding Yongjian.NDVI Reflection of Apline Vegetation Changes in the Source Regions of the Yangtze and Yellow Rivers[J].Acta Geographica Sinica,2005,60(3):467-478.[杨建平,丁永建.长江黄河源区高寒植被变化的NDVI记录[J].地理学报,2005,60(3):467-478.]

[18]Liang Sihai,Chen Jiang.Regularity of Vegetation Coverage Changes in Tibetan Plateau over the Last 21 Years[J].Advances in Earth Science,2007,22(1):33-40.[梁四海,陈江.近21年青藏高原植被覆盖变化规律[J].地球科学进展,2007,22(1):33-40.]

[19]Li Xiaobing,Shi Peijun.Research on Regulation of NDVI Change of Chinese Primary Vegetation Types based on NOAA/AVHRR Data[J].Acta Botanica Sinica,1999,41(3):314-324.[李晓兵,史培军.基于NOAA/AVHRR数据的中国主要植被类型NDVI变化规律研究[J].植物学报,1999,41(3):314-324.]

[20]Jakubauskas M E,Legates D R.Crop Identification Using Harmonic Analysis of Time Series AVHRR NDVI Data[J].Computers and Electronics in Agriculture,2002,37:127-139.

[21]Bradley B A,Jacob R W.Acurve Fitting Procedure to Derive Inter-annual Phonologies form Time Series of Noisy Statellite NDVI Data[J].Remote Sensing of Enviroment.2007,106:137-145.

[22]Karlsen S R,Tolvanen A.MODIS-NDVI based Mapping of the Length of the Growing Season in Northern Fennoscandia[J].International Journal of Applied Earth Observation and Geoinformation,2008,10:253-266.

[23]Jonsson P,Eklundh L.Timesat-A Program for Analyzing Time-series of Satellite Sensor Data[J].Computers & Geosciences,2004,30:833-845.

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