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Геологические концепции

Geological concepts
  • Date submitted
    1991-11-13
  • Date accepted
    1992-01-23
  • Date published
    1992-11-23

Spatial and temporal content of rock-layer boundaries

Article preview

In the case of mutational layering, the layered boundaries of sedimentary strata act as either spatial or temporal boundaries. In the case of mutation layering, these boundaries contain spatial and temporal information. It is shown that when considering the migration mechanism of layering formation against the background of different sedimentation regimes, the same boundary can be transformed into temporal, spatial, and spatial-temporal boundaries.

How to cite: Odessky I.A. Spatial and temporal content of rock-layer boundaries // Journal of Mining Institute. 1992. Vol. 134 . p. 116-122.
Geological concepts
  • Date submitted
    1991-11-03
  • Date accepted
    1992-01-29
  • Date published
    1992-11-23

Geological process as a system: formation of an oil and gas bearing basin

Article preview

On the example of the development of the most typical oil-and-gas bearing sedimentary basins the geological process as a peculiar system with such important characteristics as structure, stability and variability is considered. The regularities of uneven rate and mosaic character of evolution of sedimentary basins are determined.

How to cite: Moroz S.A., Larchenkov E.P. Geological process as a system: formation of an oil and gas bearing basin // Journal of Mining Institute. 1992. Vol. 134 . p. 123-131.
Geological concepts
  • Date submitted
    1991-11-07
  • Date accepted
    1992-01-14
  • Date published
    1992-11-23

Evolutionist methodology and regressive processes in mineral and organic matter

Article preview

The development of the material world is studied using the methods of evolutionist doctrine, which is widely used in various fields of knowledge, particularly in geology. Regressive branches of evolution have been analyzed much weaker, so there is no methodological basis for studying such processes, which does not allow us to establish regularities and predict the features of their course in the future. There is a need to create an adequate doctrine of the regressive state of matter, part of which will be the theory of regressive processes in the lithosphere and their role in the formation of mineral deposits.

How to cite: Morakhovsky V.N. Evolutionist methodology and regressive processes in mineral and organic matter // Journal of Mining Institute. 1992. Vol. 134 . p. 132-140.
Geological concepts
  • Date submitted
    1991-11-26
  • Date accepted
    1992-01-14
  • Date published
    1992-11-23

Cosmogenic factor of diatherm formation

Article preview

Taking into account the data of previous researchers (about spatial and temporal connections between ring explosive structures and diatreme fields, about deep structural indifference diatreme fields and zones, about electric discharge genesis of diatreme cavities, about electric interactions between meteoric bodies and the Earth's surface), the concept of explosion tubes formation as a result of interaction of electric fields of large meteoric bodies and the Earth's interior is put forward.

How to cite: Khazanovich-Wulf K.K. Cosmogenic factor of diatherm formation // Journal of Mining Institute. 1992. Vol. 134 . p. 141-152.
Geological concepts
  • Date submitted
    1991-11-16
  • Date accepted
    1992-01-28
  • Date published
    1992-11-23

Auto-oscillatory character of spreading in oceanic rifts

Article preview

On the example of a two-layer model of the tectonosphere in the oceanic rift zone, the main stages of lithospheric plate excavation are highlighted. A qualitative view of normal stresses in the body of the tectonospheric package is given. A model of the process of plate cooling in the rift zone is given. The conclusion is made about the autocoletive character of the evolution of the tectonosphere in the rift zone. A scheme of the corresponding mechanism is given.

How to cite: Zhemchuzhnikov E.G. Auto-oscillatory character of spreading in oceanic rifts // Journal of Mining Institute. 1992. Vol. 134 . p. 153-156.