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首页> 外文期刊>Engineering Geology >Thermal regime of permafrost at Varandey Settlement along the Barents Sea Coast, North West Arctic Russia
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Thermal regime of permafrost at Varandey Settlement along the Barents Sea Coast, North West Arctic Russia

机译:沿着北极海沿岸的瓦尔德大道瓦兰大道定居点的热冻土制度

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摘要

Soil temperature variation is one of the governing factors of mechanical properties of frozen soils and has a large effect on the stability of soil masses in regions affected by permafrost. The understanding of the thermal regime is critical for planning, designing, constructing, and maintaining infrastructure needed to sustain communities and/or industries in these regions. Detailed studies on the effects of thermal variations based on field data measured in permafrost are limited due to the high cost and high risk associated with field investigations in these remote areas. This study will contribute to bridge the current knowledge gap through an investigation of the thermal regime in permafrost at Pesyakov Island in the Varandey settlement along the Barents Sea coast, in northwest Arctic Russia. Samples were collected and thermistor string was installed at a series of 6 boreholes along a 500 m transect. The transect crosses a coastal barrier island from the beach margin through a dune belt to the laida zone. Continuous measurement of the ground temperature over a period of two years reveals a strong correlation between the surface conditions (air temperature, vegetation, snowfall) and the variation of soil temperature above the permafrost. Numerical modelling of the transect, calibrated with the measured soil temperature, shows important features of the thermal profile, including the existence of frozen soil lenses within unfrozen soil masses and vice versa.
机译:土壤温度变化是冷冻土壤机械性能的控制因素之一,对受永久冻土影响的地区土壤群体的稳定性有很大影响。对热力制度的理解对于规划,设计,构建和维护这些地区维持社区和/或行业所需的基础设施至关重要。基于在多年冻土中测量的现场数据的热变化效果的详细研究由于与这些偏远地区的实地研究相关的高成本和高风险。本研究将通过调查在北极俄罗斯西北部的巴斯尼·海岸的佛兰大厅沉淀的Pesyakov岛的Pesyakov岛的热力制度来促进当前知识差距。收集样品,并将热敏电阻串沿500μm晶体安装在一系列6个钻孔处。横断面穿过海滩边缘的沿海屏障岛到莱达区。连续测量在两年间的地面温度下显示出表面条件(空气温度,植被,降雪)与Permafrost高于土壤温度的变化之间的强烈相关性。横断的数值建模,用测量的土壤温度校准,显示了热曲线的重要特征,包括在解冻的土壤质量块内的冷冻土壤透镜的存在,反之亦然。

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