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Geotechnical Engineering and Engineering Geology
  • Date submitted
    2021-04-19
  • Date accepted
    2021-10-18
  • Date published
    2021-12-16

Mutual spectral densities calculation of the moments of resistance on the peat milling unit working bodies

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When performing technological operations in the peat industry, various units with milling-type working bodies are used. They differ in design, layout, number and type of cutting elements, operating modes, and may have one or more working bodies. During operation, random forces and moments act on the cutters, which have a dramatically variable nature, which is associated with the periodic interaction of the knives with the peat deposit, its structural heterogeneity, variations in the milling depth, physical and mechanical properties of peat, the rotational speed of the cutter and the movement speed of the machine. In this case, significant dynamic loads arise in the structural elements, which leads to a decrease in their reliability, deterioration of the energy characteristics of the engine operation and technical and economic indicators of use. In the dynamic analysis of drive elements, when using machines with several working bodies, it is necessary to know both spectral and mutual spectral load densities. For their calculation, expressions were obtained that take into account the physical and mechanical properties of peat, the operating modes of the unit and their probabilistic characteristics, as well as the design features of the working body. The expressions are obtained for the case when there are several working bodies with the same diameters and the number of knives in the cutting plane. In this case, the number of planes, width, type of cutting element and type of cutting (locked, semi-locked, etc.) may differ. As an example of using the developed approaches, the calculation of spectral and mutual spectral densities of moments on cutters and loads in the drive elements of the machine for surface-layer milling MTF-14 is presented.

How to cite: Fomin K.V. Mutual spectral densities calculation of the moments of resistance on the peat milling unit working bodies // Journal of Mining Institute. 2021. Vol. 251. p. 745-756. DOI: 10.31897/PMI.2021.5.14
Oil and gas
  • Date submitted
    2019-07-17
  • Date accepted
    2019-10-09
  • Date published
    2020-04-24

Assessment of internal pressure effect, causing additional bending of the pipeline

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Article justifies accounting for internal pressure effect in the pipeline, causing additional bending of the pipeline. According to some scientists, there is an erroneously used concept of the equivalent longitudinal axial force (ELAF) S x , which depends on working pressure, temperature stresses, and joint deformations of pipelines with various types of soils. However, authors of the article use ELAF S x concept at construction of mathematical model of stress-strain state (SSS) for complex section of the trunk pipeline, and also reveal it when analyzing the results of calculating the durability and stability of the pipeline. Analysis of SSS for calculated section of the pipeline was carried out for two statements of the problem for different values of operation parameters. In the first statement, effect of internal pressure causing bending of the pipeline is taken into account, and in the second it is neglected. It is shown that due to effect of ELAF S x at p 0 = 9.0 MPa, Dt = 29 °C extreme value of bend increases by 54 %, extreme values of bending stresses from span bending moment increase by 74 %, and extreme value of bending stresses from support bending moment double with regard to corresponding SSS characteristics of the pipeline. In case of neglecting the internal pressure effect causing additional bending of the pipeline (second statement of the problem), error in calculating the extreme value of bend is 35 %, extreme value of bending stresses from span bending moments is 44 %, and extreme value of bending stresses from support bending moments is 95 %.

How to cite: Baktizin R.N., Zaripov R.M., Korobkov G.E., Masalimov R.B. Assessment of internal pressure effect, causing additional bending of the pipeline // Journal of Mining Institute. 2020. Vol. 242. p. 160-168. DOI: 10.31897/PMI.2020.2.160
Electromechanics and mechanical engineering
  • Date submitted
    2019-06-19
  • Date accepted
    2019-09-11
  • Date published
    2020-02-25

Method for estimating the spectrum density of the resistance moment on the working body of a peat milling unit

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The main source of dynamic loads in the drive elements and the design of the peat milling unit is the working body. The forces of external resistance arising in the process of performing a technological operation are sharply variable, random in nature. The article proposes a model of formation of the moment of resistance on the mill when interacting with peat. The case when there are several cutting planes with the same radius at the ends of the cutting elements is considered. When developing the model, it was taken into account that the operating conditions of the knives, determined by the type of cutting (blocked, semi-blocked, etc.), their width and type in each cutting plane can vary. Factors that determine the nature of loading, such as the frequency of interaction of the cutting elements with the fallow and the randomness of the operating conditions of the unit, lead to the presentation of the loads in the form of a sequence of pulses with random parameters. Expressions are obtained for determining the spectral density of the moment of resistance on the mill at the design stage, taking into account its design, operating modes, physico-mechanical properties of peat and their probabilistic characteristics. To illustrate the application of the developed approaches, a technique is presented for determining the spectral density of the moment on the working body of deep milling machines and in their drive elements based on a linear model. An example of calculation is given, and the obtained expressions are verified on the basis of experimental data. The probabilistic characteristics of the loads on the mill serve as initial information for the dynamic analysis of the drive system and the design of the unit, its strength analysis, the selection of optimal parameters and operating modes.

How to cite: Fomin K.V. Method for estimating the spectrum density of the resistance moment on the working body of a peat milling unit // Journal of Mining Institute. 2020. Vol. 241. p. 58-67. DOI: 10.31897/PMI.2020.1.58
Oil and gas
  • Date submitted
    2018-11-03
  • Date accepted
    2019-01-16
  • Date published
    2019-04-23

Interpretation of the tracer investigation results considering convective mass transfer

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The paper discusses the results of interpreting well tracer studies. It is shown that from the law of mass conservation it follows that when filtering a volume of an indicator, part of the injected tracer flows into the matrix. With the flow of fluid containing the indicator from the low-filtration resistance channel (LFR) into the surrounding matrix, the linear dimensions of the flow area depend on the permeability and porosity properties of the high-permeability channel and the matrix. While another part of the tracer moves toward the production well, its mass is lost due to diffusion processes. From the solution of the diffusion equation, it follows that the initial concentration of the tracer decreases in the course of filtration along the LFR channel. To interpret the results of the tracer studies, different cases of the LFR channels' location in the volume of the productive formation are considered. The varied parameter w allows characterizing the presence of several peaks in the concentration of the indicator and calculation the filtration parameters of the LFR channels. Depending on the known technological indices, several methods for determining pore volumes in the LFR channels have been proposed. To reduce the water cut in producing wells and to apply the technology of changing or aligning the injectivity profiles, calculations of the pore channels' radii in the mass of highly permeable seams are presented. It is shown that the volume of the chemical reagent pumped into the injection well to isolate the LFR channel is affected by the linear dimensions of the drainage area for the aqueous solution of indicator. Examples of the calculation for the permeability and porosity parameters of the LFR, the volume of pore channels necessary to isolate water inflow, and the radii of pore filtration channels, which influence the selection of the size of chemical reagent molecules, are given.

How to cite: Korotenko V.A., Grachev S.I., Kryakvin A.B. Interpretation of the tracer investigation results considering convective mass transfer // Journal of Mining Institute. 2019. Vol. 236. p. 185-193. DOI: 10.31897/PMI.2019.2.185
Electromechanics and mechanical engineering
  • Date submitted
    2015-12-01
  • Date accepted
    2016-02-29
  • Date published
    2016-12-23

Simulation of diesel engine energy conversion processes

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In order to keep diesel engines in good working order the troubleshooting methods shall be improved. For their further improvement by parameters of associated processes a need has arisen to develop a diesel engine troubleshooting method based on time parameters of operating cycle. For such method to be developed a computational experiment involving simulation of diesel engine energy conversion processes has been carried out. The simulation was based on the basic mathematical model of reciprocating internal combustion engines, representing a closed system of equations and relationships. The said model has been supplemented with the engine torque dynamics taking into account the current values of in-cylinder processes with different amounts of fuel injected, including zero feed. The torque values obtained by the in-cylinder pressure conversion does not account for mechanical losses, which is why the base simulation program has been supplemented with calculations for the friction and pumping forces. In order to determine the indicator diagram of idle cylinder a transition to zero fuel feed mode and exclusion of the combustion process from calculation have been provisioned.

How to cite: Afanasev A.S., Tretyakov A.A. Simulation of diesel engine energy conversion processes // Journal of Mining Institute. 2016. Vol. 222. p. 839-844. DOI: 10.18454/PMI.2016.6.839
Geology and geophsics
  • Date submitted
    2010-07-28
  • Date accepted
    2010-09-30
  • Date published
    2011-03-21

Ingineering geological problems of high-rise construction with underground space development in Saint-Petersburg

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The history of high-rise construction is considered summarily. The main features of high-rise buildings and difficulties connected with theirs engineering and construction especially with underground space development and deep excavations in soft water saturated soils are characterized. Territorial construction guides «Residential and social high-rise buildings» prevail in Saint-Petersburg are analyzed in the context of recommendations for reliable basement choice. Brief description of Pre-Quanernary clays (Upper Vendian clays and Lower Cambrian clays) as basement for high-rise constructions are given. It is placed emphasis that the main feature of Pre-Quaternary clays is zone sequence of physical and mechanical properties and fissuring in depth. Physical and mechanical properties of Upper Vendian clays, Lower Cambrian clays and glacial clays are given. In addition, it is confirmed that glacial soils is not recommended to use as a basement for high-rise buildings.

How to cite: Dashko R.E., Zhukova A.M. Ingineering geological problems of high-rise construction with underground space development in Saint-Petersburg // Journal of Mining Institute. 2011. Vol. 189. p. 19-22.
Development of oil and gas deposits
  • Date submitted
    2010-07-14
  • Date accepted
    2010-09-07
  • Date published
    2011-03-21

Substantiation of pumped volumes of flow angularity compositions in injection wells

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The method of calculation pumped volumes of flow angularity compositions in injection wells, which based on combination of the seepage theory, laboratory investigation and field experience is developed.

How to cite: Mavliev A.R., Rogachev M.K., Mardashov D.V. Substantiation of pumped volumes of flow angularity compositions in injection wells // Journal of Mining Institute. 2011. Vol. 189. p. 182-186.
Development of oil and gas deposits
  • Date submitted
    2010-07-16
  • Date accepted
    2010-09-06
  • Date published
    2011-03-21

The aboveground oil pipeline temperature regimes calculation

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The theoretical and experimental investigations of the highviscosity oil transportation temperature regimes to improve the pipeline efficiency are caused by the insufficient knowledge of its heat transfer process. The dependencies for the hydraulic resistance coefficient and the dimensionless heat transfer coefficient of Nusselt are proposed.

How to cite: Trapeznikov S.Y. The aboveground oil pipeline temperature regimes calculation // Journal of Mining Institute. 2011. Vol. 189. p. 187-190.
Applied and fundamental research in physics and mathematics
  • Date submitted
    2009-09-26
  • Date accepted
    2009-11-22
  • Date published
    2010-06-25

Use of mosfet for the control of dielectric characteristics

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In this work a device for measurement on a constant voltage of the basic electric characteristics of high-resistance dielectric materials and products from – their electric capacitance and resistance – is developed. The principle of work of the device is based on use of transients in connected in sereies elements having electric capacity and resistance. In the electric circuit of the device the MOSFET with high entrance resistance is used. The device on the basis of the MOSFET for measurement of surface potential of dielectrics is considered also. Use of this device is especially effective at measurement of electret surface potential. Results of research of electrets on a basis of silicon dioxide are discussed.

How to cite: Pshchelko N.S., Mustafaev A.S. Use of mosfet for the control of dielectric characteristics // Journal of Mining Institute. 2010. Vol. 187. p. 125-131.