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Modeling Hydrothermal Transfer Processes in Permafrost Regions of Qinghai-Tibet Plateau in China 被引量:4
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作者 HU Guojie ZHAO Lin +6 位作者 LI Ren WU Tonghua WU Xiaodong PANG Qiangqiang XIAO Yao QIAO Yongping SHI Jianzong 《Chinese Geographical Science》 SCIE CSCD 2015年第6期713-727,共15页
Hydrothermal processes are key components in permafrost dynamics; these processes are integral to global warming. In this study the coupled heat and mass transfer model for(Coup Model) the soil-plant-atmosphere-system... Hydrothermal processes are key components in permafrost dynamics; these processes are integral to global warming. In this study the coupled heat and mass transfer model for(Coup Model) the soil-plant-atmosphere-system is applied in high-altitude permafrost regions and to model hydrothermal transfer processes in freeze-thaw cycles. Measured meteorological forcing and soil and vegetation properties are used in the Coup Model for the period from January 1, 2009 to December 31, 2012 at the Tanggula observation site in the Qinghai-Tibet Plateau. A 24-h time step is used in the model simulation. The results show that the simulated soil temperature and water content, as well as the frozen depth compare well with the measured data. The coefficient of determination(R2) is 0.97 for the mean soil temperature and 0.73 for the mean soil water content, respectively. The simulated soil heat flux at a depth of 0–20 cm is also consistent with the monitored data. An analysis is performed on the simulated hydrothermal transfer processes from the deep soil layer to the upper one during the freezing and thawing period. At the beginning of the freezing period, the water in the deep soil layer moves upward to the freezing front and releases heat during the freezing process. When the soil layer is completely frozen, there are no vertical water exchanges between the soil layers, and the heat exchange process is controlled by the vertical soil temperature gradient. During the thawing period, the downward heat process becomes more active due to increased incoming shortwave radiation at the ground surface. The melt water is quickly dissolved in the soil, and the soil water movement only changes in the shallow soil layer. Subsequently, the model was used to provide an evaluation of the potential response of the active layer to different scenarios of initial water content and climate warming at the Tanggula site. The results reveal that the soil water content and the organic layer provide protection against active layer deepening in summer, so climate warming will cause the permafrost active layer to become deeper and permafrost degradation. 展开更多
关键词 过程模拟 西藏高原 高原多年冻土区 土壤-植物-大气系统 CoupModel 青海 传热传质模型 垂直温度梯度
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人类工程活动对青藏高原北部多年冻土融化层及其环境的影响 被引量:4
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作者 郭正刚 吴青柏 牛富军 《应用生态学报》 CAS CSCD 北大核心 2006年第11期2136-2140,共5页
人类工程活动对多年冻土环境的影响是评价人类工程活动对冻土生态系统影响的重要组成部分.以修建青藏公路时的工程干扰带与非干扰带为对比,研究了人类工程活动对多年冻土环境及其融化层的影响.结果表明,干扰带的融化层厚度比非干扰带要... 人类工程活动对多年冻土环境的影响是评价人类工程活动对冻土生态系统影响的重要组成部分.以修建青藏公路时的工程干扰带与非干扰带为对比,研究了人类工程活动对多年冻土环境及其融化层的影响.结果表明,干扰带的融化层厚度比非干扰带要小,在非工程干扰带内,融化层厚度随海拔高度的升高,总体上呈下降趋势;而在工程干扰带内,融化层厚度随海拔高度的变化无规律可循.植被类型对冻土融化层厚度的影响表现为:草原>灌丛>草甸.干扰带和非干扰带的土壤含水量垂直分布格局主要受海拔高度的影响,在海拔接近时,受植被状况的影响.人类工程活动对地温的影响表现为干扰带温度低于非干扰带温度. 展开更多
关键词 人类工程活动 融化层 土壤温度 土壤水分
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青藏高原多年冻土变化对水文过程的影响 被引量:60
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作者 赵林 胡国杰 +6 位作者 邹德富 吴晓东 马露 孙哲 原黎明 周华云 刘世博 《中国科学院院刊》 CSSCI CSCD 北大核心 2019年第11期1233-1246,共14页
在全球气候变暖背景下,青藏高原多年冻土发生着不同程度的退化,从而对区域气候、水文和生态过程产生了显著影响。文章在青藏高原多年冻土区长期观测资料的基础上,结合再分析资料,分析了近10年来多年冻土区气温和降水的变化特征,并对活... 在全球气候变暖背景下,青藏高原多年冻土发生着不同程度的退化,从而对区域气候、水文和生态过程产生了显著影响。文章在青藏高原多年冻土区长期观测资料的基础上,结合再分析资料,分析了近10年来多年冻土区气温和降水的变化特征,并对活动层厚度、地温和土壤含水量的变化趋势进行了研究。结果表明,近10年来青藏高原不同站点多年冻土发生了显著的变化,活动层厚度增加,地温升高以及活动层底部土壤含水量增加。从区域尺度来看,1980—2018年多年冻土区降水和土壤含水量呈现显著增加趋势。这些变化可能是导致青藏高原多年冻土区水文过程、湖泊面积变化和地表形变等的主要原因。结果有助于进一步认识多年冻土变化对区域环境的影响,可为冻土与水循环相互作用关系的机理研究提供思路,为寒区环境保护、工程设计和施工提供参考经验。 展开更多
关键词 多年冻土 活动层 温度 土壤含水量 降水
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