Vegetation cover changes and their relationship to climate variation in the source region of the Yellow River, China, 1990-2000

被引:30
作者
Guo, W. Q. [1 ]
Yang, T. B. [1 ]
Dai, J. G. [2 ]
Shi, L. [1 ]
Lu, Z. Y. [1 ]
机构
[1] Lanzhou Univ, Key Lab Western Chinas Environm Syst, Minist Educ, Lanzhou 730000, Peoples R China
[2] Liaoning Technol Univ, Sch Geomat, Fuxin 123000, Peoples R China
基金
中国国家自然科学基金;
关键词
D O I
10.1080/01431160701395229
中图分类号
TP7 [遥感技术];
学科分类号
081102 ; 0816 ; 081602 ; 083002 ; 1404 ;
摘要
The change history of vegetation cover and its relations to growing season precipitation (GSP) and average growing season temperature (AGST) in the source region of the Yellow River (SRYR) during 1990-2000 was retrieved based on the 1km Advanced Very High-Resolution Radiometer (AVHRR) Normalized Difference Vegetation Index (NDVI) data and meteorological records. The results show an overall warming and drying trend of the climate and a common degradation tendency of the ecosystem, with a greening trend in higher rugged regions. The pixel-by-pixel correlations between NDVI and climate factors indicate that a decrease in GSP mainly affects ecosystems with low precipitation and worse vegetation condition, and superimposes on the effects of increasing AGST which further deteriorate the climate background of these ecosystems. However, the positive correlations between AGST and NDVI in some higher/rugged regions suggest that the raising temperature can ameliorate vegetation growth conditions in these areas. Comparison and combination of the results of three change detection algorithms, i.e. post-classification comparison (PCC), principal components analysis (PCA) and a newly developed multi-temporal image difference (MTID) method, show that the integration of different methods can give a more comprehensive understanding of vegetation changes than any single method.
引用
收藏
页码:2085 / 2103
页数:19
相关论文
共 45 条
[1]   Interannual variability of NDVI over Africa and its relation to El Nino Southern Oscillation [J].
Anyamba, A ;
Eastman, JR .
INTERNATIONAL JOURNAL OF REMOTE SENSING, 1996, 17 (13) :2533-2548
[2]   Climatic change at high elevation sites: An overview [J].
Beniston, M ;
Diaz, HF ;
Bradley, RS .
CLIMATIC CHANGE, 1997, 36 (3-4) :233-251
[3]   RELATION BETWEEN THE NORMALIZED DIFFERENCE VEGETATION INDEX AND ECOLOGICAL VARIABLES [J].
CIHLAR, J ;
STLAURENT, L ;
DYER, JA .
REMOTE SENSING OF ENVIRONMENT, 1991, 35 (2-3) :279-298
[4]   Continuous fields of vegetation characteristics at the global scale at 1-km resolution [J].
DeFries, RS ;
Townshend, JRG ;
Hansen, MC .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 1999, 104 (D14) :16911-16923
[5]   MODELING RELATIONSHIPS BETWEEN NDVI AND PRECIPITATION DURING VEGETATIVE GROWTH CYCLES [J].
DI, LP ;
RUNDQUIST, DC ;
HAN, LH .
INTERNATIONAL JOURNAL OF REMOTE SENSING, 1994, 15 (10) :2121-2136
[6]  
EASTMAN JR, 1993, PHOTOGRAMM ENG REM S, V59, P1307
[7]   Taking the pulse of mountains: Ecosystem responses to climatic variability [J].
Fagre, DB ;
Peterson, DL ;
Hessl, AE .
CLIMATIC CHANGE, 2003, 59 (1-2) :263-282
[8]   Geostatistical approaches for incorporating elevation into the spatial interpolation of rainfall [J].
Goovaerts, P .
JOURNAL OF HYDROLOGY, 2000, 228 (1-2) :113-129
[9]   NORTH-AMERICAN VEGETATION PATTERNS OBSERVED WITH THE NOAA-7 ADVANCED VERY HIGH-RESOLUTION RADIOMETER [J].
GOWARD, SN ;
TUCKER, CJ ;
DYE, DG .
VEGETATIO, 1985, 64 (01) :3-14
[10]   CLIMATE EFFECTS ON MOUNTAIN PLANTS [J].
GRABHERR, G ;
GOTTFRIED, M ;
PAULI, H .
NATURE, 1994, 369 (6480) :448-448