globalchange  > 气候变化事实与影响
CSCD记录号: CSCD:5964919
论文题名:
2001-2015年喜马拉雅南麓地区植被变化遥感监测
其他题名: Vegetation changes in south Himalayas areas based on remote sensing monitoring during 2001-2015
作者: 马磊; 闫浩文; 何毅; 张乾; 刘波
刊名: 干旱区地理
ISSN: 1000-6060
出版年: 2017
卷: 40, 期:2, 页码:405-414
语种: 中文
中文关键词: 喜马拉雅南麓 ; 植被变化 ; 遥感 ; 气候变化
英文关键词: south Himalayas Mountain ; vegetation change ; remote sensing ; climate change
WOS学科分类: PLANT SCIENCES
WOS研究方向: Plant Sciences
中文摘要: 本文应用喜马拉雅南麓地区MODIS NDVI植被遥感数据和格点数据,采用趋势线分析、多元回归等方法分析了该研究区2001-2015年植被NDVI_(max)时空变化特征,同时利用Person相关分析探讨了植被NDVI_(max)时空变化特征与气候因子的响应关系。结果表明:(1)2001-2015年,喜马拉雅南麓地区年内平均NDVI_(max) 1~3月份呈下降趋势,4~6月份开始缓慢生长,6~9月份进入植被生长高峰期,10月份开始逐渐降低;植被NDVI_(max)平均值为0.59,植被覆盖度较高;空间上植被覆盖度总体呈东南高西北低,由东南向西北递减;平均NDVI_(max)随海拔变化表现出明显规律性,80%的植被主要分布在较低海拔区(<4 050 m)。(2)15 a间,喜马拉雅南麓地区植被NDVI_(max)变化具有阶段性特征,年均NDVI_(max)呈三个变化阶段:2001-2006年和2010-2015年分别以0.003 9·a~(-1)、0.005 3·a~(-1)的速率增长,而2006-2010年以-0.007 0·a~(-1)的速率减少。植被生长季NDVI_(max)呈4个阶段:2001-2004和2007-2010年分别以-0.001 8·a~(-1)、-0.010 6·a~(-1)的速率逐年减少,但2005、2006两年(0.014 8·a~(-1))快速增长至最大值,2010-2015年(0.006 3 a~(-1))波动增长。空间上大部分地区表现出不显著退化,但少部分地区表现出不显著改善(0.05
英文摘要: Vegetation plays an important role in the global cycle of geobiochemistry,significantly affects the climate and sensitively responds to the climate change on the contrary. Consequently,studying the spatio-temporal features of the vegetation is vital for climate monitoring. The ecosystem of vegetation in the Eurasia is severely affected by climate change. As the border of the Indian subcontinent and Tibet Plateau,Himalayas alike makes intensivelyresponse to the climate change. It is an all-but uninhabited part in the world,holds abundant biodiversity, and has the most integrated vertical distribution of the vegetation.The vegetation in Himalayas Mountain has been well studied on the climate patterns,vegetation forms,land use and climate factors. However,the vegetation on the whole south mountain and the conditions of growth rate havent been well studied. Besides,the primary climate factors affecting the vegetation change are still unknown. Based on remote sensing and grid data from MODIS NDVI in the mountainous areas of south Himalayas during 2001-2015,trend curvetheory and multiple regression method were applied toanalyze the spatio-temporal features of south Himalayas,and Pearson correlation analysis was utilized to study the correlations between climate factors and the NDVI_(max) values in this area during the past 15 years. The results show as follows:(1)during 2001-2015,the average value of NDVI_(max) decreased from January to March and slowly increased from April to June,then reached the peak period from June to September and began to decrease gradually from October to December. On the whole,the average value of NDVI_(max) was high(0.59),decreased from South-East to North-West,and furthermore,varied over elevation changes regularly, and 80% of the vegetation was below 4 050 meters;(2)the NDVI_(max) value in this area changed by timephase, of which the annual average varied in 3 phases,the change rates were 0.003 9·a~(-1) and 0.005 3·a~(-1) in 2001- 2006 and 2010-2015,respectively,while -0.007 0·a~(-1) in 2006-2010;during the growing season,the NDVI_(max) varied in 4 phases,the rates of change were -0.001 8·a~(-1) and -0.010 6·a~(-1) in 2001-2004 and 2007-2010,respectively, 0.014 8·a~(-1) in 2005-2006 when the NDVI_(max) value reached the maximum and 0.006 3·a~(-1) in 2010-2015 when the increase of NDVI_(max) value fluctuated. The vegetation was degrading insignificantly in most areas,while improving insignificantly(0.05
资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/157417
Appears in Collections:气候变化事实与影响

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作者单位: 兰州交通大学测绘与地理信息学院, 甘肃省地理国情监测工程实验室, 兰州, 甘肃 730070, 中国

Recommended Citation:
马磊,闫浩文,何毅,等. 2001-2015年喜马拉雅南麓地区植被变化遥感监测[J]. 干旱区地理,2017-01-01,40(2):405-414
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