A Long‐Term (2012–2024) Data Set of Integrated Land–Atmosphere–Carbon–Hydrology Interactions Observations in Ningxiang, East Monsoon Region

ABSTRACT The eastern monsoon region of China, characterised by its high population density and rapid economic development, is particularly sensitive to global climate change. Issues such as water scarcity, droughts and floods, as well as ecological and environmental degradation, are particularly pro...

Full description

Saved in:
Bibliographic Details
Main Authors: Ruichao Li, Zhenghui Xie, Binghao Jia, Zhipeng Xie, Longhuan Wang, Yuhang Tian, Heng Yan, Yanbin You
Format: Article
Language:English
Published: Wiley 2025-07-01
Series:Geoscience Data Journal
Subjects:
Online Access:https://doi.org/10.1002/gdj3.70010
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1850079665145774080
author Ruichao Li
Zhenghui Xie
Binghao Jia
Zhipeng Xie
Longhuan Wang
Yuhang Tian
Heng Yan
Yanbin You
author_facet Ruichao Li
Zhenghui Xie
Binghao Jia
Zhipeng Xie
Longhuan Wang
Yuhang Tian
Heng Yan
Yanbin You
author_sort Ruichao Li
collection DOAJ
description ABSTRACT The eastern monsoon region of China, characterised by its high population density and rapid economic development, is particularly sensitive to global climate change. Issues such as water scarcity, droughts and floods, as well as ecological and environmental degradation, are particularly pronounced in this region. Consequently, there is a significant scientific imperative to investigate the land, atmosphere, carbon and hydrology interactions within this region. It is imperative for enhancing the efficiency of water usage, elucidating the evolutionary mechanisms of the carbon and hydrological cycles and evaluating ecological and environmental impacts. In this context, the present study introduces an integrated observation platform of the land–atmosphere–carbon–hydrology interactions in the eastern monsoon region—Ningxiang Station of the Institute of Atmospheric Physics, Chinese Academy of Sciences, and provides a long‐term (2012–2024) integrated observation data set of the land–atmosphere–carbon–hydrology interactions. The integrated observation data set comprises hourly basic meteorological elements, half‐hourly flux data and half‐hourly groundwater depth data. These continuous, long‐term, and high‐resolution data sets have been employed to investigate land–atmosphere–carbon–hydrology interactions in the eastern monsoon region. Furthermore, the data set provides a critical foundation for the development of a new generation high‐resolution earth system models and for advancing understanding of the impacts and feedback mechanisms of natural processes and anthropogenic activities on water, energy, material exchanges and climate. The complete data set is publicly accessible via the Science Data Bank (https://doi.org/10.57760/sciencedb.20182).
format Article
id doaj-art-b06b6749988249bd8955ef3bddb34b3c
institution DOAJ
issn 2049-6060
language English
publishDate 2025-07-01
publisher Wiley
record_format Article
series Geoscience Data Journal
spelling doaj-art-b06b6749988249bd8955ef3bddb34b3c2025-08-20T02:45:08ZengWileyGeoscience Data Journal2049-60602025-07-01123n/an/a10.1002/gdj3.70010A Long‐Term (2012–2024) Data Set of Integrated Land–Atmosphere–Carbon–Hydrology Interactions Observations in Ningxiang, East Monsoon RegionRuichao Li0Zhenghui Xie1Binghao Jia2Zhipeng Xie3Longhuan Wang4Yuhang Tian5Heng Yan6Yanbin You7State Key Laboratory of Earth System Numerical Modeling and Application Institute of Atmospheric Physics, Chinese Academy of Sciences Beijing ChinaState Key Laboratory of Earth System Numerical Modeling and Application Institute of Atmospheric Physics, Chinese Academy of Sciences Beijing ChinaState Key Laboratory of Earth System Numerical Modeling and Application Institute of Atmospheric Physics, Chinese Academy of Sciences Beijing ChinaKey Laboratory of Tibetan Environment Changes and Land Surface Processes Institute of Tibetan Plateau Research, Chinese Academy of Sciences Beijing ChinaCollege of Forestry Beijing Forestry University Beijing ChinaState Key Laboratory of Earth System Numerical Modeling and Application Institute of Atmospheric Physics, Chinese Academy of Sciences Beijing ChinaState Key Laboratory of Earth System Numerical Modeling and Application Institute of Atmospheric Physics, Chinese Academy of Sciences Beijing ChinaState Key Laboratory of Earth System Numerical Modeling and Application Institute of Atmospheric Physics, Chinese Academy of Sciences Beijing ChinaABSTRACT The eastern monsoon region of China, characterised by its high population density and rapid economic development, is particularly sensitive to global climate change. Issues such as water scarcity, droughts and floods, as well as ecological and environmental degradation, are particularly pronounced in this region. Consequently, there is a significant scientific imperative to investigate the land, atmosphere, carbon and hydrology interactions within this region. It is imperative for enhancing the efficiency of water usage, elucidating the evolutionary mechanisms of the carbon and hydrological cycles and evaluating ecological and environmental impacts. In this context, the present study introduces an integrated observation platform of the land–atmosphere–carbon–hydrology interactions in the eastern monsoon region—Ningxiang Station of the Institute of Atmospheric Physics, Chinese Academy of Sciences, and provides a long‐term (2012–2024) integrated observation data set of the land–atmosphere–carbon–hydrology interactions. The integrated observation data set comprises hourly basic meteorological elements, half‐hourly flux data and half‐hourly groundwater depth data. These continuous, long‐term, and high‐resolution data sets have been employed to investigate land–atmosphere–carbon–hydrology interactions in the eastern monsoon region. Furthermore, the data set provides a critical foundation for the development of a new generation high‐resolution earth system models and for advancing understanding of the impacts and feedback mechanisms of natural processes and anthropogenic activities on water, energy, material exchanges and climate. The complete data set is publicly accessible via the Science Data Bank (https://doi.org/10.57760/sciencedb.20182).https://doi.org/10.1002/gdj3.70010eastern monsoon regionflux datagroundwatermeteorological observations
spellingShingle Ruichao Li
Zhenghui Xie
Binghao Jia
Zhipeng Xie
Longhuan Wang
Yuhang Tian
Heng Yan
Yanbin You
A Long‐Term (2012–2024) Data Set of Integrated Land–Atmosphere–Carbon–Hydrology Interactions Observations in Ningxiang, East Monsoon Region
Geoscience Data Journal
eastern monsoon region
flux data
groundwater
meteorological observations
title A Long‐Term (2012–2024) Data Set of Integrated Land–Atmosphere–Carbon–Hydrology Interactions Observations in Ningxiang, East Monsoon Region
title_full A Long‐Term (2012–2024) Data Set of Integrated Land–Atmosphere–Carbon–Hydrology Interactions Observations in Ningxiang, East Monsoon Region
title_fullStr A Long‐Term (2012–2024) Data Set of Integrated Land–Atmosphere–Carbon–Hydrology Interactions Observations in Ningxiang, East Monsoon Region
title_full_unstemmed A Long‐Term (2012–2024) Data Set of Integrated Land–Atmosphere–Carbon–Hydrology Interactions Observations in Ningxiang, East Monsoon Region
title_short A Long‐Term (2012–2024) Data Set of Integrated Land–Atmosphere–Carbon–Hydrology Interactions Observations in Ningxiang, East Monsoon Region
title_sort long term 2012 2024 data set of integrated land atmosphere carbon hydrology interactions observations in ningxiang east monsoon region
topic eastern monsoon region
flux data
groundwater
meteorological observations
url https://doi.org/10.1002/gdj3.70010
work_keys_str_mv AT ruichaoli alongterm20122024datasetofintegratedlandatmospherecarbonhydrologyinteractionsobservationsinningxiangeastmonsoonregion
AT zhenghuixie alongterm20122024datasetofintegratedlandatmospherecarbonhydrologyinteractionsobservationsinningxiangeastmonsoonregion
AT binghaojia alongterm20122024datasetofintegratedlandatmospherecarbonhydrologyinteractionsobservationsinningxiangeastmonsoonregion
AT zhipengxie alongterm20122024datasetofintegratedlandatmospherecarbonhydrologyinteractionsobservationsinningxiangeastmonsoonregion
AT longhuanwang alongterm20122024datasetofintegratedlandatmospherecarbonhydrologyinteractionsobservationsinningxiangeastmonsoonregion
AT yuhangtian alongterm20122024datasetofintegratedlandatmospherecarbonhydrologyinteractionsobservationsinningxiangeastmonsoonregion
AT hengyan alongterm20122024datasetofintegratedlandatmospherecarbonhydrologyinteractionsobservationsinningxiangeastmonsoonregion
AT yanbinyou alongterm20122024datasetofintegratedlandatmospherecarbonhydrologyinteractionsobservationsinningxiangeastmonsoonregion
AT ruichaoli longterm20122024datasetofintegratedlandatmospherecarbonhydrologyinteractionsobservationsinningxiangeastmonsoonregion
AT zhenghuixie longterm20122024datasetofintegratedlandatmospherecarbonhydrologyinteractionsobservationsinningxiangeastmonsoonregion
AT binghaojia longterm20122024datasetofintegratedlandatmospherecarbonhydrologyinteractionsobservationsinningxiangeastmonsoonregion
AT zhipengxie longterm20122024datasetofintegratedlandatmospherecarbonhydrologyinteractionsobservationsinningxiangeastmonsoonregion
AT longhuanwang longterm20122024datasetofintegratedlandatmospherecarbonhydrologyinteractionsobservationsinningxiangeastmonsoonregion
AT yuhangtian longterm20122024datasetofintegratedlandatmospherecarbonhydrologyinteractionsobservationsinningxiangeastmonsoonregion
AT hengyan longterm20122024datasetofintegratedlandatmospherecarbonhydrologyinteractionsobservationsinningxiangeastmonsoonregion
AT yanbinyou longterm20122024datasetofintegratedlandatmospherecarbonhydrologyinteractionsobservationsinningxiangeastmonsoonregion