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DOI10.21782/KZ1560-7496-2017-4(12-22)
Temperature behavior of permafrost in east siberia and Russian far east: A regional model in controlled-source electromagnetic fields
Neradovskii L.G.
发表日期2017
ISSN15607496
卷号21期号:4
英文摘要The paper presents synthesis of land-based resistivity surveys for estimation of the thermal behavior of permafrost in East Siberia and the Russian Far East. The approach is based on correlation between the attenuation rate of electromagnetic fields in the active layer and ground temperatures. In the study area, this correlation shows a satisfactory fit to the logistic function, which makes base for a regional model. The model has been tested on several specific engineering objects. It is applicable to assessment of the initial thermal state of permafrost and its subsequent changes in hardly accessible and scarcely populated areas.
英文关键词Amplitude attenuation parameter; Borehole thermometry; Ground penetrating radar; Induction method; Layer of annual temperature fluctuations; Permafrost; Regional model; Temperature
学科领域amplitude; borehole; electromagnetic field; ground penetrating radar; permafrost; thermal structure; thermometry; wave attenuation; Russian Federation; Siberia
语种英语
scopus关键词amplitude; borehole; electromagnetic field; ground penetrating radar; permafrost; thermal structure; thermometry; wave attenuation; Russian Federation; Siberia
来源期刊Earth's Cryosphere
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/119487
作者单位Melnikov Institute of Permafrost, SB RAS, 36, Merzlotnaya str., Yakutsk, 677010, Russian Federation
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GB/T 7714
Neradovskii L.G.. Temperature behavior of permafrost in east siberia and Russian far east: A regional model in controlled-source electromagnetic fields[J],2017,21(4).
APA Neradovskii L.G..(2017).Temperature behavior of permafrost in east siberia and Russian far east: A regional model in controlled-source electromagnetic fields.Earth's Cryosphere,21(4).
MLA Neradovskii L.G.."Temperature behavior of permafrost in east siberia and Russian far east: A regional model in controlled-source electromagnetic fields".Earth's Cryosphere 21.4(2017).
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