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криолитозона

Geotechnical Engineering and Engineering Geology
  • Date submitted
    2023-07-04
  • Date accepted
    2023-09-20
  • Date published
    2023-10-27

Structure maintenance experience and the need to control the soils thermal regime in permafrost areas

Article preview

The risks of reducing the stability of buildings and structures are increasing in conditions of climate change and the active development of the territories under the influence of natural and anthropogenic factors. The main causes include: loss of the bearing capacity of frozen soils, various geocryological processes, errors at the stages of design, construction and operation of facilities. Main actual task when conducting research and industrial operations in the cryolithozone is monitoring and, if necessary, managing thermal processes in the permafrost layers interacting with facilities. In this article the obtained positive experience of various technologies applying at various stages of the life cycle of civil and industrial facilities was analyzed. It helps to eliminate or prevent the structure deformation or destruction under the influence of climate change. The methods of permafrost stabilization used in the oil and gas industry in process of industrial infrastructure development of the fields have been studied – freezing (cooling) of foundation soils during construction on heterogeneous foundations. The solution to the problems of minimizing accidents when locating production wells in the permafrost zone of the Yamal Peninsula is considered using the example of an oil and gas condensate field and restoring of the temperature regime of perennial unfrozen soils in areas of valve units of main gas pipelines. An assessment of methods used to maintain the industrial and residential infrastructure within the northern municipalities that ensure the functioning of the fuel and energy complex of the Russian Federation in the Arctic was made. The systems of thermal stabilization in the foundations of buildings and industrial facilities built and operated on permafrost soils allow to fully use the high strength and low deformability of frozen grounds. It ensures the state's long-term plans of the industrial development in the Arctic.

How to cite: Brushkov A.V., Alekseev A.G., Badina S.V., Drozdov D.S., Dubrovin V.A., Zhdaneev O.V., Zheleznyak M.N., Melnikov V.P., Okunev S.N., Osokin A.B., Ostarkov N.A., Sadurtinov M.R., Sergeev D.O., Fedorov R.Y., Frolov K.N. Structure maintenance experience and the need to control the soils thermal regime in permafrost areas // Journal of Mining Institute. 2023. Vol. 263 . p. 742-756. EDN IMQTQY
Development of solid mineral deposits
  • Date submitted
    2010-07-28
  • Date accepted
    2010-09-18
  • Date published
    2011-03-21

Assessment of alluvial gold-bearing raw materials from the permafrost zone for justification of combined geotechnology of gold heap leaching

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The paper presents results of cryogenetic impact on mineral composition and geotechnological properties of alluvial gold-bearing raw materials of natural and man-made origin. In particular, distinctive features in mineral composition of alluvial deposits are described within the permafrost zone and outside it as well as the nature, mechanisms and peculiar features in reduction of man-made gold amalgams are shown. The results obtained were used to justify the expediency of implementation of the combined heap gold ore leaching technology at alluvial deposits in the permafrost zone, which includes preliminary concentration of coarse, medium and fine gold as well as the gold amalgam.

How to cite: Tataurov S.B. Assessment of alluvial gold-bearing raw materials from the permafrost zone for justification of combined geotechnology of gold heap leaching // Journal of Mining Institute. 2011. Vol. 189 . p. 160-167.
Development of solid mineral deposits
  • Date submitted
    2010-07-20
  • Date accepted
    2010-09-01
  • Date published
    2011-03-21

Experimental and theoretical studies and justification of geotechnology of stock pile formation from pelletized gold-bearing ores in order to enhance its filtration properties

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Optimal parameters of geotechnology of stock pile formation from pelletized gold-bearing ores were established basing on experimental and theoretical studies in order to enhance its filtration properties. In particular, exponential dependence was established of permeability coefficient on the stock pile height and the ultimate strength of the pelletized ore, its bulk weight and content of coarse particles +2 mmin combination with sandy-loamy and loamy fine grained soil. Without account of this data loss of gold within the stock pile can increase over 2 or 3 times. Basing on the results obtained application of the combined geothechnology of heap leaching of gold-bearing clayey materials of natural and man-made origin was justified.

How to cite: Tataurov S.B. Experimental and theoretical studies and justification of geotechnology of stock pile formation from pelletized gold-bearing ores in order to enhance its filtration properties // Journal of Mining Institute. 2011. Vol. 189 . p. 168-174.
Mining
  • Date submitted
    1952-07-21
  • Date accepted
    1952-09-09
  • Date published
    1953-01-01

The state of knowledge of the issues of exploitation of mineral deposits in permafrost conditions

Article preview

There are almost no comprehensive data on the operating conditions of mineral deposits in the permafrost zone. The available information usually provides a one-sided assessment of the operating conditions, so it is necessary to approach them critically. Most often, permafrost is considered a positive factor that facilitates the construction and maintenance of mine workings, drainage and reduces the risk of underground fires of endogenous origin, gas emission and dust formation. With a short service life of underground workings driven in the stable permafrost zone, their maintenance is indeed facilitated and the water inflow is reduced. Meanwhile, some theoretical premises and practical data force us to reconsider this position. With an unstable permafrost regime, which is explained by the heterogeneity of the geothermal regime of the region and the influence of construction, the construction and maintenance of mine workings of an especially long service life may be even more difficult and expensive than under normal conditions, and the influx of water can create a threat to the very existence of the mine. It is characteristic that even authors who consider permafrost to be a positive factor point out these difficulties.

How to cite: Gerontev V.I. The state of knowledge of the issues of exploitation of mineral deposits in permafrost conditions // Journal of Mining Institute. 1953. Vol. 28 . p. 173-183.