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Identifying Scale-location Specific Control on Vegetation Distribution in Mountain-hill Region 被引量:3

Identifying Scale-location Specific Control on Vegetation Distribution in Mountain-hill Region
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摘要 The scale-location specific control on vegetation distribution was investigated through continuous wavelet transforms approaches in subtropical mountain-hill region, Fujian, China. The Normalized Difference Vegetation Index (NDVI) was calculated as an indicator of vegetation greenness using Chinese Environmental Disaster Reduction Satellite images along latitudinal and longitudinal transects. Four scales of variations were identified from the local wavelet spectrum of NDVI, with much stronger wavelet variances observed at larger scales. The characteristic scale of vegetation distribution within mountainous and hilly regions in Southeast China was around 20 km. Significantly strong wavelet coherency was generally examined in regions with very diverse topography, typically characterized as small mountains and hills fractured by rivers and residents. The continuous wavelet based approaches provided valuable insight on the hierarchical structure and its corresponding characteristic scales of ecosystems, which might be applied in defining proper levels in multilevel models and optimal bandwidths in Geographically Weighted Regression. vegetation continuous The scale-location specific control on distribution was investigated through wavelet transforms approaches in subtropical mountain-hill region, Fujian, China. The Normalized Difference Vegetation Index (NDVI) was calculated as an indicator of vegetation greenness using Chinese Environmental Disaster Reduction Satellite images along latitudinal and longitudinal transects. Four scales of variations were identified from the local wavelet spectrum of NDVI, with much stronger wavelet variances observed at larger scales. The characteristic scale of vegetation distribution within mountainous and hilly regions in Southeast China was around 20 km. Significantly strong wavelet coherency was generally examined in regions with very diverse topography, typically characterized as small mountains and hills fractured by rivers and residents. The continuous wavelet based approaches provided valuable insight on the hierarchical structure and its corresponding characteristic scales of ecosystems, which might be applied in defining proper levels in multilevel models and optimal bandwidths in Geographically Weighted Regression.
出处 《Journal of Mountain Science》 SCIE CSCD 2013年第4期541-552,共12页 山地科学学报(英文)
基金 supported by the National Natural Science Foundation of China(NSFC)(Grant No.41071267) Scientific Research Foundation for Returned Scholars,Ministry of Education of China(Grant No.[2012]940) the Science & Technology Department of Fujian Province,China(Grant Nos.2012I0005,2012J01167)
关键词 山地丘陵地区 植被分布 位置控制 小波变换方法 归一化植被指数 中国环境 NDVI 特征尺度 NDVI Continuous wavelet transform Characteristic scale Mountain-hill region Scale-location specific
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