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Temporal and Spatial Changes of Freeze-Thaw Cycles in Ulan'aodu Region of Horqin Sandy Land, Northern China in a Changing Climate

机译:气候变化对华北科尔沁沙地乌兰奥渡地区冻融循环的时空变化

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摘要

Freeze-thaw cycles were examined using soil temperature data from 1981 to 2011 in Ulan'aodu region of Horqin sandy land in Inner Mongolia, China, to investigate the characteristics of soil freezing and thawing and its response to global changes. The results showed that soil freeze-thaw cycles mainly occurred in March and November. Soil freeze-thaw cycles at different depths showed different trends, more freeze-thaw cycles and larger freeze-thaw amplitude occurred in the upper layers than in the deeper layers. The significant trends in soil freeze-thaw cycles and soil temperatures at several depths were presented: soil freeze-thaw cycle frequencies showed a decreasing trend with time, and the highest value of freeze-thaw cycles were observed at a depth of 0 cm; the freeze-thaw cycle amplitude showed a decreasing trend over the years, and the largest freeze-thaw cycle amplitude was observed at the 0- to 5-cm depth. Both decreasing trend reached a significant level (p < 0.05) in the year 2007 and a significant abrupt decrease took place in 1997.
机译:利用1981-2011年中国内蒙古科尔沁沙地乌兰奥渡地区的土壤温度数据,研究了冻融循环,研究了土壤冻融特征及其对全球变化的响应。结果表明,土壤冻融循环主要发生在3月和11月。在不同深度的土壤冻融循环表现出不同的趋势,与深层相比,上层的冻融循环更多,冻融幅度更大。提出了不同深度土壤冻融循环和土壤温度的显着趋势:土壤冻融循环频率随时间呈下降趋势,在0 cm深度观察到最高的冻融循环值。多年以来,冻融循环振幅呈下降趋势,在0〜5 cm深度观察到最大的冻融循环振幅。两种下降趋势在2007年都达到了显着水平(p <0.05),并且在1997年急剧下降。

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