Modeling Year-to-Year Variations of Clear-Sky Land Surface Temperature Using Aqua/MODIS Data

Land surface temperature (LST) and its annual or inter-annual variations play an important role in understanding global climate change, urban heat island, and the process of land-atmosphere energy exchange. Many annual temperature cycle (ATC) models [i.e., ATC with three or five parameters (ACP3 or...

Full description

Bibliographic Details
Published in:IEEE Access
Main Authors: Zefeng Xing, Yanru Yu, Si-Bo Duan, Zhao-Liang Li, Maofang Gao, Pei Leng, Xia Zhang, Guofei Shang
Format: Article in Journal/Newspaper
Language:English
Published: IEEE 2020
Subjects:
Online Access:https://doi.org/10.1109/ACCESS.2020.3003990
https://doaj.org/article/fa878a1ec66b4ac79acfb80582e38b6c
id ftdoajarticles:oai:doaj.org/article:fa878a1ec66b4ac79acfb80582e38b6c
record_format openpolar
spelling ftdoajarticles:oai:doaj.org/article:fa878a1ec66b4ac79acfb80582e38b6c 2023-05-15T14:05:21+02:00 Modeling Year-to-Year Variations of Clear-Sky Land Surface Temperature Using Aqua/MODIS Data Zefeng Xing Yanru Yu Si-Bo Duan Zhao-Liang Li Maofang Gao Pei Leng Xia Zhang Guofei Shang 2020-01-01T00:00:00Z https://doi.org/10.1109/ACCESS.2020.3003990 https://doaj.org/article/fa878a1ec66b4ac79acfb80582e38b6c EN eng IEEE https://ieeexplore.ieee.org/document/9121975/ https://doaj.org/toc/2169-3536 2169-3536 doi:10.1109/ACCESS.2020.3003990 https://doaj.org/article/fa878a1ec66b4ac79acfb80582e38b6c IEEE Access, Vol 8, Pp 114541-114553 (2020) Land surface temperature annual temperature cycle modeling MODIS Electrical engineering. Electronics. Nuclear engineering TK1-9971 article 2020 ftdoajarticles https://doi.org/10.1109/ACCESS.2020.3003990 2022-12-30T21:57:36Z Land surface temperature (LST) and its annual or inter-annual variations play an important role in understanding global climate change, urban heat island, and the process of land-atmosphere energy exchange. Many annual temperature cycle (ATC) models [i.e., ATC with three or five parameters (ACP3 or ACP5)] have been proposed to analyze the annual variations of LST in the past decades. In this study, two year-to-year continuous and derivable models (YYCD_ACP3 and YYCD_ACP5 models) were proposed to model several years of ATCs. The fitting results of the YYCD_ACP3 model with global Aqua/MODIS daytime LSTs from 2014 to 2018 show that the YYCD_ACP3 model achieved a good performance in fitting the time-series LSTs with an overall normalized root-mean-square error (NRMSE) of 0.21, coefficient of determination (R 2 ) of 0.74, and refined index of agreement ( $d$ ) of 0.85. In addition, the modeling results of ten representative samples covering different climatic conditions and land cover worldwide show that, except for two sites located in tropical and Antarctic, the YYCD_ACP3 model could show a good performance with R 2 greater than 0.6. Although the ACP3 model shows similar performance to the YYCD_ACP3 model, the fitting curve of the YYCD_ACP3 model is continuous and smooth for describing the interannual variations of LST. When the LSTs of 2014–2018 are fitted as a whole by using both models, the YYCD_ACP3 model shows a slightly better performance than that of the ACP3 model. The application of the YYCD_ACP3 model with the global MODIS LSTs from 2003 to 2018 indicates that the results of the YYCD_ACP3 model have the potential to reveal the interannual variations of LST. Therefore, we conclude that the YYCD models are valuable for modeling the variations of LST over several years and can be widely applied. Article in Journal/Newspaper Antarc* Antarctic Directory of Open Access Journals: DOAJ Articles Antarctic IEEE Access 8 114541 114553
institution Open Polar
collection Directory of Open Access Journals: DOAJ Articles
op_collection_id ftdoajarticles
language English
topic Land surface temperature
annual temperature cycle
modeling
MODIS
Electrical engineering. Electronics. Nuclear engineering
TK1-9971
spellingShingle Land surface temperature
annual temperature cycle
modeling
MODIS
Electrical engineering. Electronics. Nuclear engineering
TK1-9971
Zefeng Xing
Yanru Yu
Si-Bo Duan
Zhao-Liang Li
Maofang Gao
Pei Leng
Xia Zhang
Guofei Shang
Modeling Year-to-Year Variations of Clear-Sky Land Surface Temperature Using Aqua/MODIS Data
topic_facet Land surface temperature
annual temperature cycle
modeling
MODIS
Electrical engineering. Electronics. Nuclear engineering
TK1-9971
description Land surface temperature (LST) and its annual or inter-annual variations play an important role in understanding global climate change, urban heat island, and the process of land-atmosphere energy exchange. Many annual temperature cycle (ATC) models [i.e., ATC with three or five parameters (ACP3 or ACP5)] have been proposed to analyze the annual variations of LST in the past decades. In this study, two year-to-year continuous and derivable models (YYCD_ACP3 and YYCD_ACP5 models) were proposed to model several years of ATCs. The fitting results of the YYCD_ACP3 model with global Aqua/MODIS daytime LSTs from 2014 to 2018 show that the YYCD_ACP3 model achieved a good performance in fitting the time-series LSTs with an overall normalized root-mean-square error (NRMSE) of 0.21, coefficient of determination (R 2 ) of 0.74, and refined index of agreement ( $d$ ) of 0.85. In addition, the modeling results of ten representative samples covering different climatic conditions and land cover worldwide show that, except for two sites located in tropical and Antarctic, the YYCD_ACP3 model could show a good performance with R 2 greater than 0.6. Although the ACP3 model shows similar performance to the YYCD_ACP3 model, the fitting curve of the YYCD_ACP3 model is continuous and smooth for describing the interannual variations of LST. When the LSTs of 2014–2018 are fitted as a whole by using both models, the YYCD_ACP3 model shows a slightly better performance than that of the ACP3 model. The application of the YYCD_ACP3 model with the global MODIS LSTs from 2003 to 2018 indicates that the results of the YYCD_ACP3 model have the potential to reveal the interannual variations of LST. Therefore, we conclude that the YYCD models are valuable for modeling the variations of LST over several years and can be widely applied.
format Article in Journal/Newspaper
author Zefeng Xing
Yanru Yu
Si-Bo Duan
Zhao-Liang Li
Maofang Gao
Pei Leng
Xia Zhang
Guofei Shang
author_facet Zefeng Xing
Yanru Yu
Si-Bo Duan
Zhao-Liang Li
Maofang Gao
Pei Leng
Xia Zhang
Guofei Shang
author_sort Zefeng Xing
title Modeling Year-to-Year Variations of Clear-Sky Land Surface Temperature Using Aqua/MODIS Data
title_short Modeling Year-to-Year Variations of Clear-Sky Land Surface Temperature Using Aqua/MODIS Data
title_full Modeling Year-to-Year Variations of Clear-Sky Land Surface Temperature Using Aqua/MODIS Data
title_fullStr Modeling Year-to-Year Variations of Clear-Sky Land Surface Temperature Using Aqua/MODIS Data
title_full_unstemmed Modeling Year-to-Year Variations of Clear-Sky Land Surface Temperature Using Aqua/MODIS Data
title_sort modeling year-to-year variations of clear-sky land surface temperature using aqua/modis data
publisher IEEE
publishDate 2020
url https://doi.org/10.1109/ACCESS.2020.3003990
https://doaj.org/article/fa878a1ec66b4ac79acfb80582e38b6c
geographic Antarctic
geographic_facet Antarctic
genre Antarc*
Antarctic
genre_facet Antarc*
Antarctic
op_source IEEE Access, Vol 8, Pp 114541-114553 (2020)
op_relation https://ieeexplore.ieee.org/document/9121975/
https://doaj.org/toc/2169-3536
2169-3536
doi:10.1109/ACCESS.2020.3003990
https://doaj.org/article/fa878a1ec66b4ac79acfb80582e38b6c
op_doi https://doi.org/10.1109/ACCESS.2020.3003990
container_title IEEE Access
container_volume 8
container_start_page 114541
op_container_end_page 114553
_version_ 1766277179330527232