Comprehensive validation of seven root zone soil moisture products at 1153 ground sites across China

Root zone soil moisture (RZSM) is a critical parameter for drought monitoring, agriculture, and vegetation growth. In situ measurements of RZSM are scarce, and therefore, RZSM products are derived mainly through modeling approaches. This study evaluated seven RZSM products, including ERA5, MERRA2, C...

詳細記述

書誌詳細
出版年:International Journal of Digital Earth
主要な著者: Jing Tian, Yongqiang Zhang
フォーマット: 論文
言語:英語
出版事項: Taylor & Francis Group 2023-12-01
主題:
オンライン・アクセス:http://dx.doi.org/10.1080/17538947.2023.2261902
_version_ 1850080698776420352
author Jing Tian
Yongqiang Zhang
author_facet Jing Tian
Yongqiang Zhang
author_sort Jing Tian
collection DOAJ
container_title International Journal of Digital Earth
description Root zone soil moisture (RZSM) is a critical parameter for drought monitoring, agriculture, and vegetation growth. In situ measurements of RZSM are scarce, and therefore, RZSM products are derived mainly through modeling approaches. This study evaluated seven RZSM products, including ERA5, MERRA2, CFSR, SMAP level 4, GLDAS-NOAH2.1, GLDAS-Catchment2.2, and SMOS CATDS Level 4, using 1153 ground sites across China. The evaluations aimed to address which products perform better, how well they capture the seasonal variations, and how they perform under different land surface and climate conditions. Results showed that MERRA2 and NOAH had the best performance, with MERRA2 having a better ability to capture surplus and deficit soil moisture conditions. The study also revealed that precipitation forcing plays a vital role in improving RZSM simulations. Conversely, ERA5 overestimates RZSM, and SMOS exhibits a dry bias. From the time series variability, all datasets except SMOS can capture the temporal dynamics of RZSM well. Moreover, the accuracy of the RZSM products varies significantly in tropical climate zones. This study provides crucial insights for improving land surface and hydrological models in estimating RZSM, which will help in drought management and agriculture production.
format Article
id doaj-art-212ea8a6e92e4a1f8e1b63eb782aaffe
institution Directory of Open Access Journals
issn 1753-8947
1753-8955
language English
publishDate 2023-12-01
publisher Taylor & Francis Group
record_format Article
spelling doaj-art-212ea8a6e92e4a1f8e1b63eb782aaffe2025-08-20T00:13:09ZengTaylor & Francis GroupInternational Journal of Digital Earth1753-89471753-89552023-12-011624008402210.1080/17538947.2023.22619022261902Comprehensive validation of seven root zone soil moisture products at 1153 ground sites across ChinaJing Tian0Yongqiang Zhang1Chinese Academy of SciencesChinese Academy of SciencesRoot zone soil moisture (RZSM) is a critical parameter for drought monitoring, agriculture, and vegetation growth. In situ measurements of RZSM are scarce, and therefore, RZSM products are derived mainly through modeling approaches. This study evaluated seven RZSM products, including ERA5, MERRA2, CFSR, SMAP level 4, GLDAS-NOAH2.1, GLDAS-Catchment2.2, and SMOS CATDS Level 4, using 1153 ground sites across China. The evaluations aimed to address which products perform better, how well they capture the seasonal variations, and how they perform under different land surface and climate conditions. Results showed that MERRA2 and NOAH had the best performance, with MERRA2 having a better ability to capture surplus and deficit soil moisture conditions. The study also revealed that precipitation forcing plays a vital role in improving RZSM simulations. Conversely, ERA5 overestimates RZSM, and SMOS exhibits a dry bias. From the time series variability, all datasets except SMOS can capture the temporal dynamics of RZSM well. Moreover, the accuracy of the RZSM products varies significantly in tropical climate zones. This study provides crucial insights for improving land surface and hydrological models in estimating RZSM, which will help in drought management and agriculture production.http://dx.doi.org/10.1080/17538947.2023.2261902root zone soil moisturevalidationchinaseven products
spellingShingle Jing Tian
Yongqiang Zhang
Comprehensive validation of seven root zone soil moisture products at 1153 ground sites across China
root zone soil moisture
validation
china
seven products
title Comprehensive validation of seven root zone soil moisture products at 1153 ground sites across China
title_full Comprehensive validation of seven root zone soil moisture products at 1153 ground sites across China
title_fullStr Comprehensive validation of seven root zone soil moisture products at 1153 ground sites across China
title_full_unstemmed Comprehensive validation of seven root zone soil moisture products at 1153 ground sites across China
title_short Comprehensive validation of seven root zone soil moisture products at 1153 ground sites across China
title_sort comprehensive validation of seven root zone soil moisture products at 1153 ground sites across china
topic root zone soil moisture
validation
china
seven products
url http://dx.doi.org/10.1080/17538947.2023.2261902
work_keys_str_mv AT jingtian comprehensivevalidationofsevenrootzonesoilmoistureproductsat1153groundsitesacrosschina
AT yongqiangzhang comprehensivevalidationofsevenrootzonesoilmoistureproductsat1153groundsitesacrosschina