Application of electrical tomography to study the internal structure of rock glaciers in Altai

Internal structure of rock glaciers was investigated at two key sites in Altai by means of electric tomography. It had been found that the rock glaciers of the same type, located at different altitude levels, differ in electric resistances of ice nuclei and the degree of consolidation of the ice mat...

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Main Authors: G. S. Dyakova, V. V. Olenchenko, O. V. Ostanin
Format: Article
Language:Russian
Published: Nauka 2017-04-01
Series:Lëd i Sneg
Subjects:
Online Access:https://ice-snow.igras.ru/jour/article/view/360
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spelling doaj-b1a6f65c5e26461d96eaed41308d691a2021-08-02T08:42:10ZrusNaukaLëd i Sneg2076-67342412-37652017-04-01571697610.15356/2076-6734-2017-1-69-76305Application of electrical tomography to study the internal structure of rock glaciers in AltaiG. S. Dyakova0V. V. Olenchenko1O. V. Ostanin2Altai State UniversityTrofimuk Institute of Petroleum Geology and Geophysics, Siberian Branch, Russian Academy of SciencesAltai State UniversityInternal structure of rock glaciers was investigated at two key sites in Altai by means of electric tomography. It had been found that the rock glaciers of the same type, located at different altitude levels, differ in electric resistances of ice nuclei and the degree of consolidation of the ice material inside of them. Typical characteristics of the ice core of a rock glacier in the high-mountain area are the following: electrical resistivity is about 1000–2000 kOhm∙m and a high degree of the ice consolidation, while the same for the mid-mountain region: the electrical resistivity is 150–300 kOhm∙m and the presence of the talik zones within the glacier body. Using the method of electric tomography for investigation of the internal structure of the rock-glaciers makes possible to reveal presence of frozen soils and ice and to find the upper boundary of occurrence of them from anomalously high specific electric resistance. However, it is not always possible to determine a thickness of the rock-ice formation, and to estimate a degree of its consolidation that does not allow calculating the ice content volume. Limitations of this technology can be overcome by the use of electric tomography in combination with other geophysical methods.https://ice-snow.igras.ru/jour/article/view/360altaielectrical resistivity tomographyglacial-permafrost rock formationsrock glacier
collection DOAJ
language Russian
format Article
sources DOAJ
author G. S. Dyakova
V. V. Olenchenko
O. V. Ostanin
spellingShingle G. S. Dyakova
V. V. Olenchenko
O. V. Ostanin
Application of electrical tomography to study the internal structure of rock glaciers in Altai
Lëd i Sneg
altai
electrical resistivity tomography
glacial-permafrost rock formations
rock glacier
author_facet G. S. Dyakova
V. V. Olenchenko
O. V. Ostanin
author_sort G. S. Dyakova
title Application of electrical tomography to study the internal structure of rock glaciers in Altai
title_short Application of electrical tomography to study the internal structure of rock glaciers in Altai
title_full Application of electrical tomography to study the internal structure of rock glaciers in Altai
title_fullStr Application of electrical tomography to study the internal structure of rock glaciers in Altai
title_full_unstemmed Application of electrical tomography to study the internal structure of rock glaciers in Altai
title_sort application of electrical tomography to study the internal structure of rock glaciers in altai
publisher Nauka
series Lëd i Sneg
issn 2076-6734
2412-3765
publishDate 2017-04-01
description Internal structure of rock glaciers was investigated at two key sites in Altai by means of electric tomography. It had been found that the rock glaciers of the same type, located at different altitude levels, differ in electric resistances of ice nuclei and the degree of consolidation of the ice material inside of them. Typical characteristics of the ice core of a rock glacier in the high-mountain area are the following: electrical resistivity is about 1000–2000 kOhm∙m and a high degree of the ice consolidation, while the same for the mid-mountain region: the electrical resistivity is 150–300 kOhm∙m and the presence of the talik zones within the glacier body. Using the method of electric tomography for investigation of the internal structure of the rock-glaciers makes possible to reveal presence of frozen soils and ice and to find the upper boundary of occurrence of them from anomalously high specific electric resistance. However, it is not always possible to determine a thickness of the rock-ice formation, and to estimate a degree of its consolidation that does not allow calculating the ice content volume. Limitations of this technology can be overcome by the use of electric tomography in combination with other geophysical methods.
topic altai
electrical resistivity tomography
glacial-permafrost rock formations
rock glacier
url https://ice-snow.igras.ru/jour/article/view/360
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AT vvolenchenko applicationofelectricaltomographytostudytheinternalstructureofrockglaciersinaltai
AT ovostanin applicationofelectricaltomographytostudytheinternalstructureofrockglaciersinaltai
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