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Influence of groundwater level change on vegetation coverage and their spatial variation in arid regions
Authors:SULTAN Danyar  SONG Yudong  MARINA Jumakeld
Institution:1. College of Water Conservancy and Hydropower Engineering, Hohai University, Nanjing 210098, China| 2. Xinjiang Institute of Ecology and Geography, CAS, Urumqi 830011, China| 3. Xinjiang Institute of Land Resource Planning, Urumqi 830011, China
Abstract:Sampling and testing are conducted on groundwater depth and vegetation coverage in the 670 km2 of the Sangong River Basin and semi-variance function analysis is made afterwards on the data obtained by the application of geo-statistics. Results showed that the variance curve of the groundwater depth and vegetation coverage displays an exponential model. Analysis of sampling data in 2003 indicates that the groundwater depth and vegetation coverage change similarly in space in this area. The Sangong River Basin is composed of upper oasis, middle ecotone and lower sand dune. In oasis and ecotone, influenced by irrigation of the adjoining oasis, groundwater level has been raised and soil water content also increased compared with sand dune nearby, vegetation developed well. But in the lower reaches of the Sangong River Basin, because of descending of groundwater level, soil water content decreased and vegetation degenerated. From oasis to abandoned land and desert grassland, vegetation coverage and groundwater level changed greatly with significant difference respectively in spatial variation. Distinct but similar spatial variability exists among the groundwater depth and vegetation coverage in the study area, namely, the vegetation coverage decreasing (increasing) as the groundwater depth increases (decreases). This illustrates the great dependence of vegetation coverage on groundwater depth in arid regions and further implies that among the great number of factors affecting vegetation coverage in arid regions, groundwater depth turns out to be the most determinant one.
Keywords:geo-statistics  groundwater level  groundwater depth  arid regions  vegetation coverage  semi-variance function  spatial variation  Kriging
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