DocumentCode
2681659
Title
Methodology for spatial scaling in NPP under the influence of variable topography and vegetation
Author
Xinfang Chen ; Chen, Xinfang ; Ju, Weimin ; Ren, Liliang
Author_Institution
Hohai Univ., Nanjing
fYear
2007
fDate
23-28 July 2007
Firstpage
4635
Lastpage
4638
Abstract
Both surface topography and vegetation heterogeneity are important factors introducing biases in regional ecological modeling, especially when the modeling is made at large grids. Several studies have demonstrated that gridding the land surface into coarse homogeneous pixels may cause important biases on ecosystem model estimations of carbon budget components at local, regional and global scales. These biases result from overlooking sub-pixel variability of land surface characteristics. This study suggests a simple algorithm that uses sub-pixel information on the spatial variability of vegetation and surface topography to correct net primary productivity (NPP) estimates, made at coarse spatial resolutions where the land surface is considered as homogeneous within each pixel. A spatial scaling algorithm is developed to correct biases in coarse-resolution NPP estimation. This algorithm considers the effect of sub-pixel heterogeneities of land cover, leaf area index (LAI), slope and elevation. Its application to a carbon-hydrology coupled model estimates made at a 1-km resolution over a watershed (named Baohe River Basin) located in the southwestern part of Qinling Mountains, in China, Shaanxi Province, China, improved estimates of average NPP as well as its temporal and spatial variability.
Keywords
ecology; topography (Earth); vegetation; vegetation mapping; Baohe River Basin; China; Qinling Mountains; carbon budget; coarse-resolution NPP estimation; ecosystem model estimations; elevation; land cover; leaf area index; net primary productivity; regional ecological modeling; slope; spatial scaling; surface topography; vegetation heterogeneity; Biological system modeling; Hydrology; Laboratories; Land surface; Productivity; Soil moisture; Spatial resolution; Surface topography; Vegetation mapping; Water resources; LAI; land cover; net primary productivity; spatial scaling; sub-pixel heterogeneity; topography;
fLanguage
English
Publisher
ieee
Conference_Titel
Geoscience and Remote Sensing Symposium, 2007. IGARSS 2007. IEEE International
Conference_Location
Barcelona
Print_ISBN
978-1-4244-1211-2
Electronic_ISBN
978-1-4244-1212-9
Type
conf
DOI
10.1109/IGARSS.2007.4423891
Filename
4423891
Link To Document