4.7 Article

Normalized Difference Vegetation Index Temporal Responses to Temperature and Precipitation in Arid Rangelands

期刊

REMOTE SENSING
卷 13, 期 5, 页码 -

出版社

MDPI
DOI: 10.3390/rs13050840

关键词

biometeorology; agrometeorological information; data analysis; grassland; MODIS

资金

  1. Programme Garantia Juvenil from Comunidad de Madrid
  2. Boosting Agricultural Insurance based on Earth Observation data-BEACON project under H2020_EU, DT-SPACE-01-EO-2018-2020 [821964]
  3. Spanish Ministerio de Ciencia Innovacion y Universidades of Spain [PGC2018-093854-B-I00]

向作者/读者索取更多资源

This study examined the relationship between NDVI and temperature, precipitation, and Aridity Index in four different arid rangeland areas in southeast Spain. The research found a strong correlation between NDVI and temperature, with differences in results depending on the temporal and spatial resolution used.
Rangeland degradation caused by increasing misuses remains a global concern. Rangelands have a remarkable spatiotemporal heterogeneity, making them suitable to be monitored with remote sensing. Among the remotely sensed vegetation indices, Normalized Difference Vegetation Index (NDVI) is most used in ecology and agriculture. In this paper, we research the relationship of NDVI with temperature, precipitation, and Aridity Index (AI) in four different arid rangeland areas in Spain's southeast. We focus on the interphase variability, studying time series from 2002 to 2019 with regression analysis and lagged correlation at two different spatial resolutions (500 x 500 and 250 x 250 m(2)) to understand NDVI response to meteorological variables. Intraseasonal phases were defined based on NDVI patterns. Strong correlation with temperature was reported in phases with high precipitations. The correlation between NDVI and meteorological series showed a time lag effect depending on the area, phase, and variable observed. Differences were found between the two resolutions, showing a stronger relationship with the finer one. Land uses and management affected the NDVI dynamics heavily strongly linked to temperature and water availability. The relationship between AI and NDVI clustered the areas in two groups. The intraphases variability is a crucial aspect of NDVI dynamics, particularly in arid regions.

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