Pedosphere 24(4): 450--460, 2014
ISSN 1002-0160/CN 32-1315/P
©2014 Soil Science Society of China
Published by Elsevier B.V. and Science Press
Soil moisture monitoring based on land surface temperature-vegetation index space derived from MODIS data
ZHANG Feng, ZHANG Li-Wen, SHI Jing-Jing and HUANG Jing-Feng
Institute of Agricultural Remote Sensing and Information Technology, Zhejiang University, Hangzhou 310058 (China)
ABSTRACT
      Soil moisture has been considered as one of the main indicators that are widely used in the fields of hydrology, climate, ecology and others. The land surface temperature-vegetation index (LST-VI) space has comprehensive information of the sensor from the visible to thermal infrared band and can well reflect the regional soil moisture conditions. In this study, 9 pairs of moderate-resolution imaging spectroradiometer (MODIS) products (MOD09A1 and MOD11A2), covering 5 provinces in Southwest China, were chosen to construct the LST-VI space, and then the spatial distribution of soil moisture in 5 provinces of Southwest China was monitored by the temperature vegetation dryness index (TVDI). Three LST-VI spaces were constructed by normalized difference vegetation index (NDVI), enhanced vegetation index (EVI), and modified soil-adjusted vegetation index (MSAVI), respectively. The correlations between the soil moisture data from 98 sites and the 3 TVDIs calculated by LST-NDVI, LST-EVI and LST-MSAVI, respectively, were analyzed. The results showed that TVDI was a useful parameter for soil surface moisture conditions. The TVDI calculated from the LST-EVI (TVDIE) space revealed a better correlation with soil moisture than those calculated from the LST-NDVI and LST-MSAVI spaces. From the different stages of the TVDIE space, it is concluded that TVDIE can effectively show the temporal and spatial differences of soil moisture, and is an effective approach to monitor soil moisture condition.
Key Words:  enhanced vegetation index, modified soil-adjusted vegetation index, normalized difference vegetation index, temperature vegetation dryness indices
Citation: Zhang, F., Zhang, L. W., Shi, J. J. and Huang, J. F. 2014. Soil moisture monitoring based on land surface temperature-vegetation index space derived from MODIS data. Pedosphere. 24(4): 450-460.
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