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Geotechnical Engineering and Engineering Geology
  • Date submitted
    2023-04-06
  • Date accepted
    2023-12-27
  • Date published
    2024-04-25

Localization of sites for the development of geomechanical processes in underground workings based on the results of the transformation and classification analysis of seismic data

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The paper considers an approach to localizing the intervals of development of geomechanical processes in underground structures based on the classification and transformation of seismic data. The proposed approach will make it possible to identify the intervals of fracturing, rock decompression, water inflow and other geomechanical processes when interpreting the results of seismic surveys. The technique provides for the formation of matrices of longitudinal (Vp), transverse (Vs) velocities and velocity ratios (Vs/Vp) along the research profile to perform sequential filtration. The filtration results serve as the basis for the formation of a bank of informative materials for further classification. Based on the domestic KOSKAD 3D software, four approaches have been implemented for a combined digital model of the Vp, Vs and Vs/Vp parameters. One of the key elements in the classification process is to combine grids to increase the probability of detecting intervals with heterogeneous identification features. The result of the application of this methodical approach is the construction of a comprehensive interpretative model, on which potential zones of geomechanical risks development are clearly manifested.

How to cite: Danilev S.M., Sekerina D.D., Danileva N.A. Localization of sites for the development of geomechanical processes in underground workings based on the results of the transformation and classification analysis of seismic data // Journal of Mining Institute. 2024. Vol. 266 . p. 260-271. EDN IEWVBO
Oil and gas
  • Date submitted
    2020-05-21
  • Date accepted
    2020-10-05
  • Date published
    2020-11-24

Method of calculating pneumatic compensators for plunger pumps with submersible drive

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One of the most promising ways to improve the efficiency of mechanized oil production is a plunger pump with a submersible drive, which allows obtaining harmonic reciprocating movement of the plunger. In the pumping process of well products by plunger pumps, oscillations in the velocity and pressure of the liquid in the lifting pipes occur, which lead to an increase in cyclic variable loads on the plunger, a decrease in the drive life period and the efficiency of the pumping unit. To eliminate the pulsation characteristics of the plunger pump and increase the reliability indicators of the pumping unit (in particular, the overhaul period), pneumatic compensators can be used. A method for calculating the optimal technological parameters of a system of deep pneumatic compensators for plunger pumping units with a submersible drive, based on mathematical modeling of hydrodynamic processes in pipes, has been developed. Calculations of the forming flow velocity and pressure in the lifting pipes of submersible plunger units equipped with pneumatic compensators (PC) have been carried out. Influence of the PC technological parameters on the efficiency of smoothing the oscillations of velocity and pressure in the pipes has been analyzed. Non-linear influence of the charging pressure and PC total volume on the efficiency of their work has been established. Optimal pressure of PC charging, corresponding to the minimum pressure in the tubing during the pumping cycle for the considered section of the tubing, is substantiated. Two ultimate options of PC system placement along the lifting pipes are considered. In the first option, PC are placed sequentially directly at the outlet of the plunger pump, in the second - evenly along the lift. It is shown that the first option provides the minimum amplitude of pressure oscillations at the lower end of the tubing and, accordingly, variable loads on the pump plunger. Nature of the pressure and flow velocity oscillations in the tubing at the wellhead for both options of PC placement has similar values .

How to cite: Timashev E.O. Method of calculating pneumatic compensators for plunger pumps with submersible drive // Journal of Mining Institute. 2020. Vol. 245 . p. 582-590. DOI: 10.31897/PMI.2020.5.10
Electromechanics and mechanical engineering
  • Date submitted
    2020-06-15
  • Date accepted
    2020-06-15
  • Date published
    2020-06-30

Non-destructive testing of multilayer medium by the method of velocity of elastic waves hodograph

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The method of velocity of elastic waves hodograph, aimed at non-destructive testing of structurally heterogeneous composite materials and products based on them, as well as multilayer products and constructions, is considered. The theoretical basis for determining the propagation velocity of elastic waves in a multilayer medium by the hodograph method is given. Based on the studies, recommendations are given for determining the propagation velocity of elastic waves in each individual layer of a multilayer medium, which allows non-destructive testing of the physicomechanical characteristics of each layer of a multilayer medium. It is shown that in addition to simple multiple reflections in a homogeneous medium, in a multilayer medium with parallel interfaces consisting of two or more layers, complex types of multiple reflected waves and mixed waves (reflected-refracted and refracted-reflected) can arise. The main task of applying the low-frequency ultrasonic method is to determine the acoustic parameters of the propagation of elastic waves (velocities, amplitudes, spectra). The main methods for determining the elastic wave velocities are considered, based on the hodograph equation of the indicated reflected waves in a multilayer medium.

How to cite: Potapov A.I., Kondratev A.V. Non-destructive testing of multilayer medium by the method of velocity of elastic waves hodograph // Journal of Mining Institute. 2020. Vol. 243 . p. 348-356. DOI: 10.31897/PMI.2020.3.348
Geology
  • Date submitted
    2018-05-22
  • Date accepted
    2018-07-04
  • Date published
    2018-10-24

Multivariance of a velocity model for structural plotting based on seismic and borehole data

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The paper discusses the peculiarities of structural modelling (forecast of the depths of the reflecting horizons) based on the seismic and drilling data system. Seismic data are represented by vertical time values and the stacking velocity of borehole data that are the depth marks of the reflecting horizons. Vertical time and the depth of the reflecting horizons are bound by the equation of average velocity but the average velocity is not determined in a seismic experiment, therefore an issue of choosing a velocity model of a complex natural object arises. The task of structural modelling is solved by the selection of formal expressions containing correlations between the parameters of the underlying model and kinematic parameters of the wave field. The optimal decision on model selection is determined by the minimum discrepancy between the predicted and actual values of the depth of the sample boreholes. A practical example shows possible variants of the interpretation model. An inverse kinematic problem on converting the vertical time of the reflected waves at the depth of horizons is solved in each production report on the results of seismic work and is probably the most common objective of seismic exploration. Considering the variety of research objects and the apparent obviousness of the solution, this topic is underrepresented in scientific literature.

How to cite: Sysoev A.P. Multivariance of a velocity model for structural plotting based on seismic and borehole data // Journal of Mining Institute. 2018. Vol. 233 . p. 459-470. DOI: 10.31897/PMI.2018.5.459
Electromechanics and mechanical engineering
  • Date submitted
    2014-09-08
  • Date accepted
    2014-11-04
  • Date published
    2015-06-26

Justification of kinematic and power parameters of rack and pinion gear for heavyloaded mining machines

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The article contains the research findings on the justification of kinematic and power parameters of a rack and pinion system for heavy-loaded mining machines. The article points out that for a designer to find more reasonable constructive solutions it is advisable to carry out wear assessment of the designed gear at a design stage. Application of additional quality parameters of gearing is proposed, i.e. coefficients of acceleration and sliding velocity and the scoring resistance coefficient. Introduction of these parameters will allow choosing geometrical parameters of the designed gearing, which will possess the best kinematic and power character-istics and will be least inclined to wear.

How to cite: Lukienko L.V., Galchenko K.V., Litvinov I.V. Justification of kinematic and power parameters of rack and pinion gear for heavyloaded mining machines // Journal of Mining Institute. 2015. Vol. 213 . p. 54-61.
Applied and fundamental research in physics and mathematics
  • Date submitted
    2009-09-06
  • Date accepted
    2009-11-14
  • Date published
    2010-06-25

The estimation of mass velocities in a layered roof and dividing pillars of the mining system in the time of influence of shock stress waves

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The mass velocity diagrams transformation in the layered border zone of the mining system in the time of tension explosion waves influence is considered. The explosion wave front is suggested to be parallel to the proximate handing roof environs discontinuity. Under the admitted assumption the mass velocity epures transformation is investigated in the layered roof stone of the mining system and in the dividing pillar.

How to cite: Karpenko V.V., Kolton G.A. The estimation of mass velocities in a layered roof and dividing pillars of the mining system in the time of influence of shock stress waves // Journal of Mining Institute. 2010. Vol. 187 . p. 70-74.