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Freeze-thaw processes of active-layer soils in the Nanweng'he River National Natural Reserve in the Da Xing'anling Mountains,northern Northeast China 被引量:2
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作者 RuiXia He HuiJun Jin +2 位作者 XiaoLi Chang YongPing Wang LiZhong Wang 《Research in Cold and Arid Regions》 CSCD 2018年第2期104-113,共10页
The active-layer soils overlying the permafrost are the most thermodynamically active zone of rock or soil and play important roles in the earth-atmosphere energy system. The processes of thawing and freezing and thei... The active-layer soils overlying the permafrost are the most thermodynamically active zone of rock or soil and play important roles in the earth-atmosphere energy system. The processes of thawing and freezing and their associated complex hydrothermal coupling can significantly affect variation in mean annual temperatures and the formation of ground ice in permafrost regions. Using soil-temperature and-moisture data obtained from the active layer between September 2011 and October 2014 in the permafrost region of the Nanweng'he River in the Da Xing'anling Mountains, the freeze-thaw characteristics of the permafrost were studied. Based on analysis of ground-temperature variation and hydrothermal transport characteristics, the thawing and freezing processes of the active layer were divided into three stages:(1) autumn-winter freezing,(2) winter freeze-up, and(3) spring-summer thawing. Variations in the soil temperature and moisture were analyzed during each stage of the freeze-thaw process, and the effects of the soil moisture and ground vegetation on the freeze-thaw are discussed in this paper. The study's results show that thawing in the active layer was unidirectional, while the ground freezing was bidirectional(upward from the bottom of the active layer and downward from the ground surface).During the annual freeze-thaw cycle, the migration of soil moisture had different characteristics at different stages. In general, during a freezing-thawing cycle, the soil-water molecules migrate downward, i.e., soil moisture transports from the entire active layer to the upper limit of the permafrost. In the meantime, freeze-thaw in the active layer can be significantly affected by the soil-moisture content and vegetation. 展开更多
关键词 Nanweng'he RIVER NATIONAL NATURAL RESERVE ACTIVE LAYER freeze-thawing processes moisture content vegetation effect
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重度火烧对兴安落叶松-白桦林自然更新的影响 被引量:5
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作者 刘学爽 李慧仁 +2 位作者 胡林林 韦昌雷 王立中 《防护林科技》 2018年第1期14-15,75,共3页
通过对大兴安岭重度火烧后的兴安落叶松-白桦林自然更新情况进行的调查,结果表明:兴安落叶松-白桦林重度火烧后,未被烧除的兴安落叶松能正常产生种子。火烧后3年,兴安落叶松自然更新数量为560株hm^(-2);火烧后6年,自然更新数量为1 533株... 通过对大兴安岭重度火烧后的兴安落叶松-白桦林自然更新情况进行的调查,结果表明:兴安落叶松-白桦林重度火烧后,未被烧除的兴安落叶松能正常产生种子。火烧后3年,兴安落叶松自然更新数量为560株hm^(-2);火烧后6年,自然更新数量为1 533株hm^(-2);火烧后10年为2 300株hm^(-2)。重度火烧区内,白桦几乎被烧光,白桦幼苗全部为萌生,3年、6年及10年其数量分别为750、2 560和6 530株hm^(-2)。火烧迹地自然更新幼苗中,兴安落叶松幼苗比例逐年降低,白桦幼苗比例不断增大,白桦表现出先锋树种更新能力及竞争适应性强的特点。 展开更多
关键词 重度火烧 兴安落叶松 白桦 自然更新
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