Analysis of vegetation changes and dominant factors on the Qinghai-Tibet Plateau, China

被引:1
作者
HongWei Wang [1 ]
Yuan Qi [1 ]
ChunLin Huang [1 ]
XiaoYing Li [1 ,2 ]
XiaoHong Deng [1 ]
JinLong Zhang [1 ]
机构
[1] Northwest Institute of Eco-environment and Resources, Chinese Academy of Sciences
[2] University of Chinese Academy of Sciences
关键词
Qinghai-Tibet Plateau; remote sensing; vegetation activity; degraded; dominant factors;
D O I
暂无
中图分类号
Q948 [植物生态学和植物地理学];
学科分类号
071012 ; 0713 ;
摘要
This research was undertaken to clarify the characteristics of vegetation change and its main influencing factors on the Qinghai-Tibet Plateau. Using the greenness rate of change(GRC) and correlation factors, we analyzed the trend of vegetation change and its dominant factors from 2000 to 2015. The results indicate that the vegetation tended to improve from 2000 to 2015 on the Qinghai-Tibet Plateau, with the improved area accounting for 39.93% of the total; and the degraded area accounting for 19.32%. The areas of degraded vegetation are mainly concentrated in the low-relief and intermediate-relief mountains of the high-altitude and extremely high-altitude areas on the Qinghai-Tibet Plateau, as the vegetation characteristics are impacted by the terrain. Temperature and precipitation have obvious response mechanisms to vegetation growth, but the effects of precipitation and temperature on vegetation degradation are not significant over a short time frame. Overgrazing and population growth are the dominant factors of vegetation degradation on the Qinghai-Tibet Plateau.
引用
收藏
页码:150 / 158
页数:9
相关论文
共 21 条
[1]   竖版中国数字山地图(1∶670万)的设计与编制 [J].
南希 ;
李爱农 ;
陈昱 ;
邓伟 .
遥感技术与应用, 2016, 31 (03) :451-458
[2]   基于秸秆补饲的青藏高原草地载畜量平衡遥感监测 [J].
李刚 ;
孙炜琳 ;
张华 ;
高春雨 .
农业工程学报, 2014, 30 (17) :200-211
[3]  
Remote sensing based monitoring of interannual variations in vegetation activity in China from 1982 to 2009[J]. LI Fei,ZENG Yuan,LI XiaoSong,ZHAO QianJun,WU BingFang.Science China(Earth Sciences). 2014(08)
[4]   青藏高原国家生态安全屏障保护与建设 [J].
孙鸿烈 ;
郑度 ;
姚檀栋 ;
张镱锂 .
地理学报, 2012, 67 (01) :3-12
[5]   青藏高原载畜能力及草畜平衡状况研究 [J].
钱拴 ;
毛留喜 ;
侯英雨 ;
伏洋 ;
张海珍 ;
杜军 .
自然资源学报, 2007, (03) :389-397+498
[6]   青藏高原环境变化对全球变化的响应及其适应对策 [J].
姚檀栋 ;
朱立平 .
地球科学进展, 2006, (05) :459-464
[7]   青藏高原草地土壤有机碳库及其全球意义 [J].
王根绪 ;
程国栋 ;
沈永平 .
冰川冻土, 2002, (06) :693-700
[8]  
Remote sensing of vegetation dynamics in drylands: Evaluating vegetation optical depth (VOD) using AVHRR NDVI and in situ green biomass data over West African Sahel[J] . Feng Tian,Martin Brandt,Yi Y. Liu,Aleixandre Verger,Torbern Tagesson,Abdoul A. Diouf,Kjeld Rasmussen,Cheikh Mbow,Yunjia Wang,Rasmus Fensholt.Remote Sensing of Environment . 2016
[9]  
Evaluating temporal consistency of long-term global NDVI datasets for trend analysis[J] . Feng Tian,Rasmus Fensholt,Jan Verbesselt,Kenneth Grogan,Stephanie Horion,Yunjia Wang.Remote Sensing of Environment . 2015
[10]   The long-term trends (1982–2006) in vegetation greenness of the alpine ecosystem in the Qinghai-Tibetan Plateau [J].
Li Zhang ;
HuaDong Guo ;
CuiZhen Wang ;
Lei Ji ;
Jing Li ;
Kun Wang ;
Lin Dai .
Environmental Earth Sciences, 2014, 72 :1827-1841