seasonaldynamicsofsuprapermafrostgroundwateranditsresponsetothefreeingthawingprocessesofsoilinthepermafrostregionofqinghaitibetplateau

The suprapermafrost groundwater in permafrost region not only is an important component of the water cycle and land surface process, but also is closely associated with the charges of ecological environment in cold region. However, the seasonal dynamics, driving factors, and mechanism of suprapermaf...

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Main Authors: Chang Juan, Wang Genxu, Li Chunjie, Mao Tianxu
Format: Report
Language:English
Published: 2015
Subjects:
Online Access:http://ir.imde.ac.cn/handle/131551/27985
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spelling ftchinacadscimhe:oai:ir.imde.ac.cn:131551/27985 2023-05-15T17:57:28+02:00 seasonaldynamicsofsuprapermafrostgroundwateranditsresponsetothefreeingthawingprocessesofsoilinthepermafrostregionofqinghaitibetplateau Chang Juan Wang Genxu Li Chunjie Mao Tianxu 2015-01-01 http://ir.imde.ac.cn/handle/131551/27985 英语 eng sciencechinaearthsciences http://ir.imde.ac.cn/handle/131551/27985 期刊论文 2015 ftchinacadscimhe 2022-12-19T18:21:39Z The suprapermafrost groundwater in permafrost region not only is an important component of the water cycle and land surface process, but also is closely associated with the charges of ecological environment in cold region. However, the seasonal dynamics, driving factors, and mechanism of suprapermafrost groundwater are not well understood. Based on observation at slope scale on suprapermafrost groundwater dynamics of typical alpine meadows in the Qinghai-Tibet Plateau, the seasonal dynamics, spatial distribution and driving factors of suprapermafrost groundwater were analyzed. The results showed that there were close relationships between the seasonal dynamics of suprapermafrost groundwater and the freezing-thawing processes of active soil in permafrost region. The seasonal dynamics of suprapermafrost groundwater and its slope distribution pattern were controlled by soil temperature of active layers. The phase and range of the suprapermafrost groundwater dynamics are determined by deep soil(below 60 cm depth) moisture and groundwater recharging sources. The relationship between active soil temperatures and dynamics of suprapermafrost groundwater levels was better described by Boltzmann functions. However, the influencing thresholds of soil temperature on groundwater dynamics varied at different depths of active layers and in different slope positions, which resulted in the significant spatial heterogeneity of suprapermafrost groundwater dynamics in slope scale. Land cover change and global warming certainly altered the dynamics of suprapermafrost groundwater and the hydraulic interaction between groundwater and rivers, and consequently altered the overall hydrologic cycle of watershed scale. Report permafrost IMHE OpenIR (Institute of Mountain Hazards and Environment, Chinese Academy of Sciences)
institution Open Polar
collection IMHE OpenIR (Institute of Mountain Hazards and Environment, Chinese Academy of Sciences)
op_collection_id ftchinacadscimhe
language English
description The suprapermafrost groundwater in permafrost region not only is an important component of the water cycle and land surface process, but also is closely associated with the charges of ecological environment in cold region. However, the seasonal dynamics, driving factors, and mechanism of suprapermafrost groundwater are not well understood. Based on observation at slope scale on suprapermafrost groundwater dynamics of typical alpine meadows in the Qinghai-Tibet Plateau, the seasonal dynamics, spatial distribution and driving factors of suprapermafrost groundwater were analyzed. The results showed that there were close relationships between the seasonal dynamics of suprapermafrost groundwater and the freezing-thawing processes of active soil in permafrost region. The seasonal dynamics of suprapermafrost groundwater and its slope distribution pattern were controlled by soil temperature of active layers. The phase and range of the suprapermafrost groundwater dynamics are determined by deep soil(below 60 cm depth) moisture and groundwater recharging sources. The relationship between active soil temperatures and dynamics of suprapermafrost groundwater levels was better described by Boltzmann functions. However, the influencing thresholds of soil temperature on groundwater dynamics varied at different depths of active layers and in different slope positions, which resulted in the significant spatial heterogeneity of suprapermafrost groundwater dynamics in slope scale. Land cover change and global warming certainly altered the dynamics of suprapermafrost groundwater and the hydraulic interaction between groundwater and rivers, and consequently altered the overall hydrologic cycle of watershed scale.
format Report
author Chang Juan
Wang Genxu
Li Chunjie
Mao Tianxu
spellingShingle Chang Juan
Wang Genxu
Li Chunjie
Mao Tianxu
seasonaldynamicsofsuprapermafrostgroundwateranditsresponsetothefreeingthawingprocessesofsoilinthepermafrostregionofqinghaitibetplateau
author_facet Chang Juan
Wang Genxu
Li Chunjie
Mao Tianxu
author_sort Chang Juan
title seasonaldynamicsofsuprapermafrostgroundwateranditsresponsetothefreeingthawingprocessesofsoilinthepermafrostregionofqinghaitibetplateau
title_short seasonaldynamicsofsuprapermafrostgroundwateranditsresponsetothefreeingthawingprocessesofsoilinthepermafrostregionofqinghaitibetplateau
title_full seasonaldynamicsofsuprapermafrostgroundwateranditsresponsetothefreeingthawingprocessesofsoilinthepermafrostregionofqinghaitibetplateau
title_fullStr seasonaldynamicsofsuprapermafrostgroundwateranditsresponsetothefreeingthawingprocessesofsoilinthepermafrostregionofqinghaitibetplateau
title_full_unstemmed seasonaldynamicsofsuprapermafrostgroundwateranditsresponsetothefreeingthawingprocessesofsoilinthepermafrostregionofqinghaitibetplateau
title_sort seasonaldynamicsofsuprapermafrostgroundwateranditsresponsetothefreeingthawingprocessesofsoilinthepermafrostregionofqinghaitibetplateau
publishDate 2015
url http://ir.imde.ac.cn/handle/131551/27985
genre permafrost
genre_facet permafrost
op_relation sciencechinaearthsciences
http://ir.imde.ac.cn/handle/131551/27985
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