4.7 Article

Using satellite based soil moisture to quantify the water driven variability in NDVI: A case study over mainland Australia

期刊

REMOTE SENSING OF ENVIRONMENT
卷 140, 期 -, 页码 330-338

出版社

ELSEVIER SCIENCE INC
DOI: 10.1016/j.rse.2013.08.022

关键词

Soil moisture; Vegetation; NDVI; Satellite

资金

  1. European Union [FP7-226701]
  2. ESA Climate Change Initiative Soil Moisture Programme (Project ESA CCI Soil Moisture) [4000104814]
  3. National Key Basic Research Program of China [2010CB428506]
  4. National Natural Science Foundation of China [40875043]
  5. State Scholarship Fund of China Scholarship Council (CSC)

向作者/读者索取更多资源

Soil moisture is crucial in regulating vegetation productivity and controlling terrestrial carbon uptake. This study aims to quantify the impact of soil moisture on vegetation at large spatial and long-term temporal scales using independent satellite observations. We used a newly developed satellite-derived soil moisture product and the Normalized Difference Vegetation Index (NDVI) to investigate the impact of soil moisture on vegetation across mainland Australia between 1991 and 2009. Our approach relied on multiple statistical methods including: (i) windowed cross correlation; (ii) quantile regression: (iii) piecewise linear regression. We found a strong positive relationship between soil moisture and NDVI, with NDVI typically lagging behind soil moisture by one month. The temporal characteristics of this relation show substantial regional variability. Dry regions with low vegetation density are more sensitive to soil moisture for the high end of the distribution of NDVI than moist regions, suggesting that soil moisture enhances vegetation growth in dry regions and in the early stage in wet regions. Using piecewise linear regression, we detected three periods with different soil moisture trends over the 19 years. The changes in NDVI trends are significant (p < 0.01) with turning points of soil moisture in the beginning of 2000 and the end of 2002. Our findings illustrate the usefulness of the new soil moisture product by demonstrating the impacts of soil moisture on vegetation at various temporal scales. This analysis could be used as a benchmark for coupled vegetation climate models. (C) 2013 Elsevier Inc All rights reserved.

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