A synthesis dataset of permafrost thermal state for the Qinghai–Tibet (Xizang) Plateau, China

Permafrost has great influences on the climatic, hydrological, and ecological systems on the Qinghai–Tibet Plateau (QTP). The changing permafrost and its impact have been attracting great attention worldwide like never before. More observational and modeling approaches are needed to promote an under...

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Published in:Earth System Science Data
Main Authors: Zhao, Lin, Zou, Defu, Hu, Guojie, Wu, Tonghua, Du, Erji, Liu, Guangyue, Xiao, Yao, Li, Ren, Pang, Qiangqiang, Qiao, Yongping, Wu, Xiaodong, Sun, Zhe, Xing, Zanpin, Sheng, Yu, Zhao, Yonghua, Shi, Jianzong, Xie, Changwei, Wang, Lingxiao, Wang, Chong, Cheng, Guodong
Format: Article in Journal/Newspaper
Language:English
Published: Copernicus Publications 2021
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Online Access:https://doi.org/10.5194/essd-13-4207-2021
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author Zhao, Lin
Zou, Defu
Hu, Guojie
Wu, Tonghua
Du, Erji
Liu, Guangyue
Xiao, Yao
Li, Ren
Pang, Qiangqiang
Qiao, Yongping
Wu, Xiaodong
Sun, Zhe
Xing, Zanpin
Sheng, Yu
Zhao, Yonghua
Shi, Jianzong
Xie, Changwei
Wang, Lingxiao
Wang, Chong
Cheng, Guodong
author_facet Zhao, Lin
Zou, Defu
Hu, Guojie
Wu, Tonghua
Du, Erji
Liu, Guangyue
Xiao, Yao
Li, Ren
Pang, Qiangqiang
Qiao, Yongping
Wu, Xiaodong
Sun, Zhe
Xing, Zanpin
Sheng, Yu
Zhao, Yonghua
Shi, Jianzong
Xie, Changwei
Wang, Lingxiao
Wang, Chong
Cheng, Guodong
author_sort Zhao, Lin
collection Niedersächsisches Online-Archiv NOA
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container_title Earth System Science Data
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description Permafrost has great influences on the climatic, hydrological, and ecological systems on the Qinghai–Tibet Plateau (QTP). The changing permafrost and its impact have been attracting great attention worldwide like never before. More observational and modeling approaches are needed to promote an understanding of permafrost thermal state and climatic conditions on the QTP. However, limited data on the permafrost thermal state and climate background have been sporadically reported in different pieces of literature due to the difficulties of accessing and working in this region where the weather is severe, environmental conditions are harsh, and the topographic and morphological features are complex. From the 1990s, we began to establish a permafrost monitoring network on the QTP. Meteorological variables were measured by automatic meteorological systems. The soil temperature and moisture data were collected from an integrated observation system in the active layer. Deep ground temperature (GT) was observed from boreholes. In this study, a comprehensive dataset consisting of long-term meteorological, GT, soil moisture, and soil temperature data was compiled after quality control from an integrated, distributed, and multiscale observation network in the permafrost regions of QTP. The dataset is helpful for scientists with multiple study fields (i.e., climate, cryospheric, ecology and hydrology, meteorology science), which will significantly promote the verification, development, and improvement of hydrological models, land surface process models, and climate models on the QTP. The datasets are available from the National Tibetan Plateau/Third Pole Environment Data Center (https://data.tpdc.ac.cn/en/disallow/789e838e-16ac-4539-bb7e-906217305a1d/, last access: 24 August 2021, https://doi.org/10.11888/Geocry.tpdc.271107, Lin et al., 2021).
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spelling ftnonlinearchiv:oai:noa.gwlb.de:cop_mods_00057881 2025-01-17T00:13:22+00:00 A synthesis dataset of permafrost thermal state for the Qinghai–Tibet (Xizang) Plateau, China Zhao, Lin Zou, Defu Hu, Guojie Wu, Tonghua Du, Erji Liu, Guangyue Xiao, Yao Li, Ren Pang, Qiangqiang Qiao, Yongping Wu, Xiaodong Sun, Zhe Xing, Zanpin Sheng, Yu Zhao, Yonghua Shi, Jianzong Xie, Changwei Wang, Lingxiao Wang, Chong Cheng, Guodong 2021-08 electronic https://doi.org/10.5194/essd-13-4207-2021 https://noa.gwlb.de/receive/cop_mods_00057881 https://noa.gwlb.de/servlets/MCRFileNodeServlet/cop_derivate_00057531/essd-13-4207-2021.pdf https://essd.copernicus.org/articles/13/4207/2021/essd-13-4207-2021.pdf eng eng Copernicus Publications Earth System Science Data -- http://www.earth-syst-sci-data.net/volumes_and_issues.html -- http://www.bibliothek.uni-regensburg.de/ezeit/?2475469 -- 1866-3516 https://doi.org/10.5194/essd-13-4207-2021 https://noa.gwlb.de/receive/cop_mods_00057881 https://noa.gwlb.de/servlets/MCRFileNodeServlet/cop_derivate_00057531/essd-13-4207-2021.pdf https://essd.copernicus.org/articles/13/4207/2021/essd-13-4207-2021.pdf https://creativecommons.org/licenses/by/4.0/ uneingeschränkt info:eu-repo/semantics/openAccess article Verlagsveröffentlichung article Text doc-type:article 2021 ftnonlinearchiv https://doi.org/10.5194/essd-13-4207-2021 2024-06-26T04:38:21Z Permafrost has great influences on the climatic, hydrological, and ecological systems on the Qinghai–Tibet Plateau (QTP). The changing permafrost and its impact have been attracting great attention worldwide like never before. More observational and modeling approaches are needed to promote an understanding of permafrost thermal state and climatic conditions on the QTP. However, limited data on the permafrost thermal state and climate background have been sporadically reported in different pieces of literature due to the difficulties of accessing and working in this region where the weather is severe, environmental conditions are harsh, and the topographic and morphological features are complex. From the 1990s, we began to establish a permafrost monitoring network on the QTP. Meteorological variables were measured by automatic meteorological systems. The soil temperature and moisture data were collected from an integrated observation system in the active layer. Deep ground temperature (GT) was observed from boreholes. In this study, a comprehensive dataset consisting of long-term meteorological, GT, soil moisture, and soil temperature data was compiled after quality control from an integrated, distributed, and multiscale observation network in the permafrost regions of QTP. The dataset is helpful for scientists with multiple study fields (i.e., climate, cryospheric, ecology and hydrology, meteorology science), which will significantly promote the verification, development, and improvement of hydrological models, land surface process models, and climate models on the QTP. The datasets are available from the National Tibetan Plateau/Third Pole Environment Data Center (https://data.tpdc.ac.cn/en/disallow/789e838e-16ac-4539-bb7e-906217305a1d/, last access: 24 August 2021, https://doi.org/10.11888/Geocry.tpdc.271107, Lin et al., 2021). Article in Journal/Newspaper permafrost Niedersächsisches Online-Archiv NOA Earth System Science Data 13 8 4207 4218
spellingShingle article
Verlagsveröffentlichung
Zhao, Lin
Zou, Defu
Hu, Guojie
Wu, Tonghua
Du, Erji
Liu, Guangyue
Xiao, Yao
Li, Ren
Pang, Qiangqiang
Qiao, Yongping
Wu, Xiaodong
Sun, Zhe
Xing, Zanpin
Sheng, Yu
Zhao, Yonghua
Shi, Jianzong
Xie, Changwei
Wang, Lingxiao
Wang, Chong
Cheng, Guodong
A synthesis dataset of permafrost thermal state for the Qinghai–Tibet (Xizang) Plateau, China
title A synthesis dataset of permafrost thermal state for the Qinghai–Tibet (Xizang) Plateau, China
title_full A synthesis dataset of permafrost thermal state for the Qinghai–Tibet (Xizang) Plateau, China
title_fullStr A synthesis dataset of permafrost thermal state for the Qinghai–Tibet (Xizang) Plateau, China
title_full_unstemmed A synthesis dataset of permafrost thermal state for the Qinghai–Tibet (Xizang) Plateau, China
title_short A synthesis dataset of permafrost thermal state for the Qinghai–Tibet (Xizang) Plateau, China
title_sort synthesis dataset of permafrost thermal state for the qinghai–tibet (xizang) plateau, china
topic article
Verlagsveröffentlichung
topic_facet article
Verlagsveröffentlichung
url https://doi.org/10.5194/essd-13-4207-2021
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https://essd.copernicus.org/articles/13/4207/2021/essd-13-4207-2021.pdf