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Estimation of the Total Atmospheric Water Vapor Content and Land Surface Temperature Based on AATSR Thermal Data

The total atmospheric water vapor content (TAWV) and land surface temperature (LST) play important roles in meteorology, hydrology, ecology and some other disciplines. In this paper, the ENVISAT/AATSR (The Advanced Along-Track Scanning Radiometer) thermal data are used to estimate the TAWV and LST o...

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Detalles Bibliográficos
Autores principales: Zhang, Tangtang, Wen, Jun, van der Velde, Rogier, Meng, Xianhong, Li, Zhenchao, Liu, Yuanyong, Liu, Rong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Molecular Diversity Preservation International (MDPI) 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3663026/
https://www.ncbi.nlm.nih.gov/pubmed/27879795
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author Zhang, Tangtang
Wen, Jun
van der Velde, Rogier
Meng, Xianhong
Li, Zhenchao
Liu, Yuanyong
Liu, Rong
author_facet Zhang, Tangtang
Wen, Jun
van der Velde, Rogier
Meng, Xianhong
Li, Zhenchao
Liu, Yuanyong
Liu, Rong
author_sort Zhang, Tangtang
collection PubMed
description The total atmospheric water vapor content (TAWV) and land surface temperature (LST) play important roles in meteorology, hydrology, ecology and some other disciplines. In this paper, the ENVISAT/AATSR (The Advanced Along-Track Scanning Radiometer) thermal data are used to estimate the TAWV and LST over the Loess Plateau in China by using a practical split window algorithm. The distribution of the TAWV is accord with that of the MODIS TAWV products, which indicates that the estimation of the total atmospheric water vapor content is reliable. Validations of the LST by comparing with the ground measurements indicate that the maximum absolute derivation, the maximum relative error and the average relative error is 4.0K, 11.8% and 5.0% respectively, which shows that the retrievals are believable; this algorithm can provide a new way to estimate the LST from AATSR data.
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spelling pubmed-36630262013-05-30 Estimation of the Total Atmospheric Water Vapor Content and Land Surface Temperature Based on AATSR Thermal Data Zhang, Tangtang Wen, Jun van der Velde, Rogier Meng, Xianhong Li, Zhenchao Liu, Yuanyong Liu, Rong Sensors (Basel) Full Research Paper The total atmospheric water vapor content (TAWV) and land surface temperature (LST) play important roles in meteorology, hydrology, ecology and some other disciplines. In this paper, the ENVISAT/AATSR (The Advanced Along-Track Scanning Radiometer) thermal data are used to estimate the TAWV and LST over the Loess Plateau in China by using a practical split window algorithm. The distribution of the TAWV is accord with that of the MODIS TAWV products, which indicates that the estimation of the total atmospheric water vapor content is reliable. Validations of the LST by comparing with the ground measurements indicate that the maximum absolute derivation, the maximum relative error and the average relative error is 4.0K, 11.8% and 5.0% respectively, which shows that the retrievals are believable; this algorithm can provide a new way to estimate the LST from AATSR data. Molecular Diversity Preservation International (MDPI) 2008-03-16 /pmc/articles/PMC3663026/ /pubmed/27879795 Text en © 2008 by MDPI Reproduction is permitted for noncommercial purposes.
spellingShingle Full Research Paper
Zhang, Tangtang
Wen, Jun
van der Velde, Rogier
Meng, Xianhong
Li, Zhenchao
Liu, Yuanyong
Liu, Rong
Estimation of the Total Atmospheric Water Vapor Content and Land Surface Temperature Based on AATSR Thermal Data
title Estimation of the Total Atmospheric Water Vapor Content and Land Surface Temperature Based on AATSR Thermal Data
title_full Estimation of the Total Atmospheric Water Vapor Content and Land Surface Temperature Based on AATSR Thermal Data
title_fullStr Estimation of the Total Atmospheric Water Vapor Content and Land Surface Temperature Based on AATSR Thermal Data
title_full_unstemmed Estimation of the Total Atmospheric Water Vapor Content and Land Surface Temperature Based on AATSR Thermal Data
title_short Estimation of the Total Atmospheric Water Vapor Content and Land Surface Temperature Based on AATSR Thermal Data
title_sort estimation of the total atmospheric water vapor content and land surface temperature based on aatsr thermal data
topic Full Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3663026/
https://www.ncbi.nlm.nih.gov/pubmed/27879795
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