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青藏高原表层土壤的日冻融循环 被引量:63
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作者 杨梅学 姚檀栋 +1 位作者 hirose nozomu Hideyuki Fujii 《科学通报》 EI CAS CSCD 北大核心 2006年第16期1974-1976,共3页
由于土壤与大气之间的能量和水分交换主要发生在界面层,因此在研究地气相互作用时,浅层土壤的冻融状况尤为重要.根据中日国际合作项目CEOP/CAMP-Tibet的观测结果分析发现,就青藏高原中部那曲附近而言,表层土壤真正冻结的日数较少(1个月... 由于土壤与大气之间的能量和水分交换主要发生在界面层,因此在研究地气相互作用时,浅层土壤的冻融状况尤为重要.根据中日国际合作项目CEOP/CAMP-Tibet的观测结果分析发现,就青藏高原中部那曲附近而言,表层土壤真正冻结的日数较少(1个月左右).而存在日冻融循环过程的日数则较多(6个月左右).土壤冻融状态的频繁变化,会极大地影响土壤和大气之间的水分和能量的交换过程.指出土壤在不同状态(完全消融、完全冻结和存在日冻融循环)下,土壤与大气之间的相互作用过程是个值得深入研究的问题. 展开更多
关键词 青藏高原 表层土壤 冻融过程 日冻融循环
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Diurnal freeze/thaw cycles of the ground surface on the Tibetan Plateau 被引量:45
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作者 YANG MeiXue YAO TanDong +4 位作者 GOU XiaoHua hirose nozomu FUJII Hide Yuki HAO LiSheng D. F. LEVIA 《Chinese Science Bulletin》 SCIE EI CAS 2007年第1期136-139,共4页
The exchange of energy and water between the lithosphere and atmosphere mainly takes place at the ground surface. Therefore, freeze/thaw condition at the ground surface is an important factor in ex- amining the intera... The exchange of energy and water between the lithosphere and atmosphere mainly takes place at the ground surface. Therefore, freeze/thaw condition at the ground surface is an important factor in ex- amining the interactions between the land surface and atmosphere. Based on the observation data obtained by CEOP/CAMP-Tibet, the diurnal freeze/thaw cycles of the ground surface near Naqu, central Tibetan Plateau was preliminarily analyzed. The results show that the surface layer was completely frozen for approximately one month. However, the time that the ground surface experienced diurnal freeze/thaw cycles was about 6 months. The high frequency of freeze/thaw cycles at the ground surface significantly influences water and energy exchanges between ground and atmosphere over half a year. The interaction processes between the ground and atmosphere under different soil conditions (such as complete thaw, complete freeze and diurnal freeze/thaw cycles) are issues worthy of further examina- tion. 展开更多
关键词 西藏 高原 地貌 冻结层 解冻层
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