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首页> 外文期刊>Arctic, antarctic, and alpine research >Freeze–thaw cycles and snow impact at arid permafrost region in Chajnantor Volcano, Atacama, northern Chile
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Freeze–thaw cycles and snow impact at arid permafrost region in Chajnantor Volcano, Atacama, northern Chile

机译:在Chajnantor Volcano,Atacama,Atacama,北北北部的Atid Pumafrost地区的冻融循环和雪灾

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摘要

Permafrost occurs in the high Atacama Desert, and its thermal state was characterized at a study site 5,075 m a.s.l., at the lower regional altitude boundary for permafrost. The permafrost body is about 5 m thick and located in the hydrothermal alteration zone. The freeze–thaw layer and upper part of the permafrost layer temperatures were measured at 0 to 39 cm depth at 1-cm resolution throughout the year. The upper 3 cm of the ground experienced more than 100 freeze–thaw cycles in 2019. The maximum thaw depth was 14 cm. No significant thermal offset is observed between the annual mean of the surface temperature and the top permafrost boundary. The 14-m borehole reveals that the geothermal gradient was quite high at 200°C/km. In 2019 the seventy days of snow cover impacted the surface energy budget. Winter and summer snow conditions contribute to cooling the surface temperature regime in different ways.
机译:多年冻土发生在高阿卡拉马沙漠中,其热态在Pumafrost的较低区域高度边界处具有5,075米A.L.。多年冻土体厚约5米,位于水热改变区。在全年以1cm的分辨率下测量0至39cm深度的冻融层和高端冻结层温度的上部。地面的3厘米在2019年经历了超过100个冻融循环。最大解冻深度为14厘米。在表面温度和顶部多年冻土边界的年平均值之间观察到没有明显的热偏移。 14米的钻孔揭示了地热梯度在200°C / km处非常高。 2019年,七十天的雪覆盖会影响地表能源预算。冬季和夏季雪条件有助于以不同方式冷却表面温度制度。

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