Submit an Article
Become a reviewer

Search articles for by keywords:
синхронный двигатель

Energy industry
  • Date submitted
    2023-03-14
  • Date accepted
    2023-06-20
  • Date published
    2023-07-19

A reliability study of the traction drive system in haul trucks based on failure analysis of their functional parts

Article preview

The efficiency of a mining and processing plant depends on the level of complex mechanization of the production process. In mineral extraction, haulage is a major cost category, with haul trucks being the key component of the mining transportation system. To improve production performance, mining operations can increase their haulage turnover and reduce transportation costs, which necessitates making haul trucks more reliable. This can be done by improving their mean time to first failure (MTFF) indicators. This article analyzes the reliability status of the traction drive system inhaul trucks operating in the mineral resources sector. It provides a quantitative assessment of traction drive system failures resulting from part defects and discusses the associated repair costs. By examining failure data from 2018 to 2022 and the results of vibration tests performed on a diesel generator, the study reveals that the most expensive failures are associated with defects in the synchronous generator, which are primarily caused by elevated external vibrations. Based on basic vibration tests and vibration spectra tests at different operating modes, recommendations have been formulated concerning the generator’s robustness to external mechanical forces and the ways to increase the generator’s protection grade to prevent dust intrusion. The study also identifies the frequency range that poses the greatest risk of damage to the windings.

How to cite: Nazarychev A.N., Dyachenok G.V., Sychev Y.A. A reliability study of the traction drive system in haul trucks based on failure analysis of their functional parts // Journal of Mining Institute. 2023. Vol. 261. p. 363-373. EDN HCLPJB
Geotechnical Engineering and Engineering Geology
  • Date submitted
    2022-08-10
  • Date accepted
    2023-02-28
  • Date published
    2024-02-29

Selection of the required number of circulating subs in a special assembly and investigation of their performance during drilling of radial branching channels by sectional positive displacement motors

Article preview

The task of sludge removal to the surface during construction of directional and horizontal wells and strongly curved radial channels is relevant. For stable operation of technical system “Perfobore”, it is proposed to use a circulating sub that ensures efficient cleaning of channel wellbore from the drilled rock. Two schemes of technical system “Perfobore” are considered, consisting of two seven-meter coiled tubing, a positive displacement motor, a bit and one circulating sub in the first scheme and two subs in the second scheme. For each of the schemes CFD modeling was implemented to determine values of pressure and speed. It was found out that the use of two circulating subs in the assembly is more efficient. In order to confirm the numerical experiment, bench tests were carried out. It was determined that the designed circulating sub can eject up to 25 % of pumped drilling fluid. The bench tests of full-size technical system “Perfobore” for drilling 14-meter channels with two circulating subs showed that the axial load on positive displacement motor produced by hydraulic loader was 3000 N and pressure drop depending on flow rate was 1.5-2.0 MPa. This allows the motor to operate at maximum power.

How to cite: Lyagov I.А., Lyagov A.V., Isangulov D.R., Lyagova А.А. Selection of the required number of circulating subs in a special assembly and investigation of their performance during drilling of radial branching channels by sectional positive displacement motors // Journal of Mining Institute. 2024. Vol. 265. p. 78-86. EDN ZBPWKU
Energy industry
  • Date submitted
    2022-10-13
  • Date accepted
    2022-12-13
  • Date published
    2023-07-19

A complex model of a drilling rig rotor with adjustable electric drive

Article preview

A modified mathematical model of an asynchronous electric drive of the rotor – a drill string – a bit – a rock is considered and implemented, which develops and generalizes the results of previously performed studies. The model includes the following subsystems: a model of an asynchronous drive with vector control; a model of formation of the resistance moment at the bottom of the bit, taking into account the peculiarities of the interaction between the bit and the rock; a model of a multi-mass mechanical part that takes into account the deformation of the drill string; subsystem for the drilling rig energy-technological parameters formation. The integrated model makes it possible to calculate and evaluate the selected drilling modes, taking into account their electro-mechanical, energy and technological efficiency and the dynamics of drilling processes. The performed computer simulation of drilling modes confirmed the possibility of a stick-slip effect accompanied by high-frequency vibrations during bit stops, which may change the direction of rotation of the bit, its accelerated wear and unscrewing of the drilling tool. Long bit stops lead to a significant decrease in the average bit rotation speed, which can explain the decrease in the ROP and increase in energy consumption when drilling in the zone of unstable bit rotation. The model can be used as a base for further improvement of rotary drilling control systems.

How to cite: Ershov M.S., Komkov А.N., Feoktistov E.A. A complex model of a drilling rig rotor with adjustable electric drive // Journal of Mining Institute. 2023. Vol. 261. p. 339-348. DOI: 10.31897/PMI.2023.20
Electromechanics and mechanical engineering
  • Date submitted
    2020-05-16
  • Date accepted
    2021-03-02
  • Date published
    2021-04-26

Study of drive currents for lifting bridge cranes of metallurgical enterprises for early diagnosis of load excess weight

Article preview

The article discusses an approach based on the analysis of the drive motor currents to create an additional means of protection against emergency situations during the operation of bridge cranes associated with lifting a load with a mass exceeding the permissible one . A mathematical model of an overhead crane drive is described, as well as the results of computer simulation. It is shown that in the process of lifting up, before the stage of lifting the load, the stator current of the drive electric motor does not depend of the load mass, but when the load is detached, already for several periods of the mains voltage after the rope is pulled, when the mass of the load is exceeded, a measurable excess of the amplitude value of the current is recorded. This pattern has been confirmed for a number of cranes of various lifting capacities used at metallurgical enterprises. The possibility of diagnosing excess weight of the lifted load with a higher speed than existing mechanical methods of overload control is demonstrated, at the same time it is not required to make changes to the structural elements of overhead cranes.

How to cite: Semykina I.Y., Kipervasser M.V., Gerasimuk A.V. Study of drive currents for lifting bridge cranes of metallurgical enterprises for early diagnosis of load excess weight // Journal of Mining Institute. 2021. Vol. 247. p. 122-131. DOI: 10.31897/PMI.2021.1.13
Geology
  • Date submitted
    2019-10-30
  • Date accepted
    2019-11-23
  • Date published
    2020-02-25

Methodology for determining the parameters of drilling mode for directional straight sections of well using screw downhole motors

Article preview

Article presents results of study on possibility of increasing the efficiency of drilling directional straight sections of wells using screw downhole motors (SDM) with a combined method of drilling with rotation of drilling string (DS). Goal is to ensure steady-state operation of SDM with simultaneous rotation of DS by reducing the amplitude of oscillations with adjusting the parameters of drilling mode on the basis of mathematical modeling for SDM – DS system. Results of experimental study on determination of extrema distribution of lateral and axial oscillations of SDM frame depending on geometrical parameters of gerotor mechanism and modes ensuring stable operation are presented. Approaches to development of a mathematical model and methodology are conceptually outlined that allow determining the range of self-oscillations for SDM – DS system and boundaries of rotational and translational wave perturbations for a heterogeneous rod with an installed SDM at drilling directional straight sections of well. This mathematical model of SDM – DS system's dynamics makes it possible to predict optimal parameters of directional drilling mode that ensure stable operation of borehole assembly.

How to cite: Litvinenko V.S., Dvoinikov M.V. Methodology for determining the parameters of drilling mode for directional straight sections of well using screw downhole motors // Journal of Mining Institute. 2020. Vol. 241. p. 105-112. DOI: 10.31897/PMI.2020.1.105
Electromechanics and mechanical engineering
  • Date submitted
    2019-07-07
  • Date accepted
    2019-09-13
  • Date published
    2019-12-24

Installation for experimental research of multiphase electromechanical systems

Article preview

The subject of this study is an installation for experimental research designed to study the characteristics and control algorithms of multiphase motors with the number of working phases from 3 to 8, connected by a star, a triangle, or in another way, allowing phase currents to flow, creating a rotating electromagnetic field. The installation consists of two separate independent units: a controller, or a human-machine control interface, and a power inverter module (converter). The controller is connected to the converter by a two-wire half-duplex interface (RS485) via the Modbus RTU communication protocol. The installation also includes synchronous motors with the number of phases 3, 5, 7. Using the developed installation for experimental research, it is possible to carry out experimental studies of multiphase motors when implementing various control algorithms for a converter that implements pulse-width vector modulation. The time required to implement control algorithms is minimal. According to the results of the experiments, it is possible to carry out a comparative analysis of multiphase motors in terms of energy efficiency, in terms of vibration of electromagnetic origin, in dynamic parameters. An experimental assessment of the load of the converter keys is possible. The created installation is an effective tool for checking the reliability of the results of theoretical studies of electromechanical systems based on multiphase motors.

How to cite: Tereshkin V.M., Grishin D.A., Makulov I.A. Installation for experimental research of multiphase electromechanical systems // Journal of Mining Institute. 2019. Vol. 240. p. 678-685. DOI: 10.31897/PMI.2019.6.678
Oil and gas
  • Date submitted
    2019-07-10
  • Date accepted
    2019-08-30
  • Date published
    2019-12-24

Methodology for calculating technical efficiency of power sections in small-sized screw downhole motors for the «Perfobur» system

Article preview

With an increase in the share of old and low-yield wells and for the efficient exploitation of fields, it is necessary to include low-capacity formations into production. There are many wells where sidetracking and hydraulic fracturing are difficult due to the close proximity of the gas cap and underlying water caused by geological and technological reasons, and the use of existing secondary drilling-in technologies is not effective due to the extensive colmatated zone or annular circulation. Relevance of radial drilling technologies is growing, which allows drilling-in of the formation with a network of extended channels to establish high-quality hydraulic communication between the formation and the well without affecting the permeability of the formation. In contrast to radial drilling technologies using hydraulic washing, technical system (TS) «Perfobur» uses small-sized screw downhole motors (SDM) and rock cutting tools for channel construction. For efficient milling of production casing and destruction of rock, the hydraulic downhole motor must have high torque, and for the possibility of drilling with a high rate of angle gain, it must have short power section. Existing Russian and foreign SDM have limited number of standard sizes and do not meet the requirements specified for the development of the downhole module of TS «Perfobur». The paper discusses the development of universal small-sized sectional screw downhole motors for milling casing strings and drilling a network of branched channels of super-small diameter and radius of curvature as a part of the TS «Perfobur». Methodology proposed in the article for selecting optimal configuration of the SDM power sections allows constructing small-sized sectional downhole motor that meets the technical requirements and has improved characteristics compared to standard SDM.

How to cite: Lyagov I.A., Baldenko F.D., Lyagov A.V., Yamaliev V.U., Lyagova A.A. Methodology for calculating technical efficiency of power sections in small-sized screw downhole motors for the «Perfobur» system // Journal of Mining Institute. 2019. Vol. 240. p. 694-700. DOI: 10.31897/PMI.2019.6.694
Electromechanics and mechanical engineering
  • Date submitted
    2019-05-05
  • Date accepted
    2019-07-03
  • Date published
    2019-10-23

Scraper Face Conveyors Dynamic Load Control

Article preview

The task of controlling the dynamic loading of scraper face conveyors (SC) is considered and the unsatisfactory state of loading of mechanical and electrical components of the SC is recorded. The possibility of the appearance of a self-oscillatory nature of the entire system load due to the peculiarities of the movement of the traction chain along the lattice frame of the SC is indicated. The property of the system is noted – the cyclic nature of the loading of the circuit during movement, which causes energy exchange processes between the mechanical and electromotive components of the conveyor (when using the head and tail electric drives) through the common cable network of the power supply system of the SC. A high level of dynamic loading of the electromechanical system causes the problem of eliminating the self-oscillating operating mode of the SC that generates it which is proposed to be solved by changing the angular rotation speeds of the SC drive sprockets. Angular speeds can be changed by applying frequency control of asynchronous electric motors. The efficiency of setting the frequency of electric motor stator currents of the head and tail drives of the conveyor is established in proportion to the frequency of rotors rotation to eliminate self- oscillating modes of operation in the main operating mode. The possibility of reducing the starting shock values of the electromagnetic moments of electric motors is considered. The results of the calculation of the start-up and liquidation of the self-oscillating operating mode are presented on the example of the scraper face conveyor Anzhera-34. The results of calculations of the start-up modes and the main operational transportation of coal in an uncontrolled mode of operation and after the introduction of control are compared, based on which it is concluded that it is advisable to use active control of the dynamic loading ofSC.

How to cite: Eshchin E.K. Scraper Face Conveyors Dynamic Load Control // Journal of Mining Institute. 2019. Vol. 239. p. 570-575. DOI: 10.31897/PMI.2019.5.570
Oil and gas
  • Date submitted
    2019-03-21
  • Date accepted
    2019-05-05
  • Date published
    2019-08-23

Stimulation of the Drilling Process with the Top Driven Screw Downhole Motor

Article preview

Paper considers application of the top driven screw downhole motor during drilling of directional wells. The advantages and disadvantages of the rotation-sliding technology with implementation of top drive together with screw downhole motor are shown. It has been proven that the use of a screw downhole motor with simultaneous rotation of drilling pipes using the drilling rig's top drive allows increasing the bit rotation frequency without additional loading of the drilling string. Field data for the work out of one-type PDC bits in identical geological and technical conditions with different types of drives during the construction of three directed wells at the Rumaila oil field of the Republic of Iraq were obtained. A regular increase in the mechanical penetration rate, which is explained by an increase in the bit rotation frequency, has been proved. According to the data obtained, a comparative analysis of the drilling indices was carried out, as a result of which the feasibility of joint use of top power drive with screw downhole motor at drilling oil and gas wells was proved.

How to cite: Simonyants S.L., Al Taee M. Stimulation of the Drilling Process with the Top Driven Screw Downhole Motor // Journal of Mining Institute. 2019. Vol. 238. p. 438-442. DOI: 10.31897/PMI.2019.4.438
Oil and gas
  • Date submitted
    2018-09-07
  • Date accepted
    2018-11-10
  • Date published
    2019-02-22

Justification of the technological parameters choice for well drilling by rotary steerable systems

Article preview

Paper presents the analysis of the investigation results of vibrational accelerations and beating amplitudes of the downhole drilling motor, which help to define the ranges of optimum energy characteristics of the gerotor mechanism, ensuring its stable operation. Dependencies describing the operation of the «drilling bit – rotary steerable system with power screw section – drilling string» system and the values of the self-oscillation boundaries and the onset of system resonance when it is used jointly, were defined as a result of computational and full-scale experimental research. A mathematical model is proposed, which allows determining the optimal range of technological parameters for well drilling, reducing the extreme vibration accelerations of the bottomhole assembly by controlling the torque-power and frequency characteristics of the drilling string, taking into account the energy characteristics of the power screw section of the rotary steerable system. Recommendations on the choice of drilling mode parameters were given.

How to cite: Litvinenko V.S., Dvoinikov M.V. Justification of the technological parameters choice for well drilling by rotary steerable systems // Journal of Mining Institute. 2019. Vol. 235. p. 24-29. DOI: 10.31897/PMI.2019.1.24
Electromechanics and mechanical engineering
  • Date submitted
    2018-08-30
  • Date accepted
    2018-10-26
  • Date published
    2019-02-22

Study of bearing units wear resistance of engines career dump trucks, working in fretting corrosion conditions

Article preview

The occurrence of fretting corrosion on nominally fixed surfaces of high-loaded parts of mining machines and mechanisms is considered. Examples of wear and damage of critical parts, bearing assemblies of engines of dump trucks in fretting conditions are given. The mechanisms of fretting corrosion when using wear-resistant coatings are considered. It is noted that when choosing protective thin-layer coatings that provide an increase in the fretting-resistance of surfaces of tightly contacting parts, it is necessary to take into account both their wear resistance and the ability to resist shear. At the same time, the thickness of such coatings allows preserving, during operation, those provided during the assembly of the tension, without disturbing the maintainability of the nodes. The results of research of fretting wear of a number of coatings on a special installation are given. The mechanisms of wear of a number of thin-layer coatings based on friction-mechanical brazing, polymer fluorocarbon composition, solid lubricant coating using scanning electron microscopy were studied. Recommendations on the use of the studied thin-layer coatings for high-loaded parts of mining machines operating in fretting corrosion conditions have been developed. The aim of the work was to study the effect of a number of thin-layer coatings on the wear of highly loaded connections of the mechanisms of mining machines, in particular bearing assemblies of quarry dump trucks operating under fretting corrosion conditions.

How to cite: Olt J., Maksarov V.V., Krasnyy V.A. Study of bearing units wear resistance of engines career dump trucks, working in fretting corrosion conditions // Journal of Mining Institute. 2019. Vol. 235. p. 70-77. DOI: 10.31897/PMI.2019.1.70
Electromechanics and mechanical engineering
  • Date submitted
    2017-11-23
  • Date accepted
    2018-01-19
  • Date published
    2018-04-24

Theoretical aspects of the technical level estimation of electrical engineering complexes

Article preview

The results of the analysis of methods allowing to evaluate the technical level of the electro technical complex (ETC) are presented and an original technique based on the application of the integral indicator is presented. The characteristic of each stage of the technique is given. The proposed scientific and methodological apparatus for assessing the technical level of the ETС is illustrated by the examples of the executive elements of the ETC comparison (internal combustion engines) using an integral quality index that links both the main characteristics of the samples and the means spent for achieving them. The proposed approach for assessing the technical level and quality of the ETC on the basis of an integral indicator should be carried out already at early stages of the life cycle when solving the following problems: the rationale for the economic feasibility of developing new or improving the quality of the produced ETCs; choice of the best option for the developed ETC; justification of requirements for the ETC; decision-making on the establishment and removal of ETC from production; substantiation of the rules of operation of the ETC in various conditions.

How to cite: Kolesnichenko S.V., Afanaseva O.V. Theoretical aspects of the technical level estimation of electrical engineering complexes // Journal of Mining Institute. 2018. Vol. 230. p. 167-175. DOI: 10.25515/PMI.2018.2.167
Electromechanics and mechanical engineering
  • Date submitted
    2017-09-10
  • Date accepted
    2017-11-10
  • Date published
    2018-02-22

Research of heat generation indicators of gas engines

Article preview

A comprehensive strategy for reviving the production of mining industry equipment and ensuring its competitiveness includes the wide use of gas engines for various purposes. Experimental studies of the working cycle of a gas engine are one of the main tasks in determining the heat generation characteristics. To this end, indicator charts were recorded in various modes, which were subjected to analysis in order to determine the key parameters characterizing intra-cylinder processes. According to the experimental program, the maximum cycle pressure, the rate of pressure build-up, the heat generation characteristic, the first heat generation phase, the duration of the second combustion phase, and the effect of the ignition advance angle for the ignition period were determined. The results of an experimental study of the influence of gas engine working process with allowance for the change in the ignition advance angle for the ignition period are described and the parameters of the maximum cycle pressure, the rate of pressure build-up, and the heat generation characteristics are determined. In the processing of data, integral charts are constructed, the working cycle parameters are calculated, and the dynamics of the engine heat generation is determined.

How to cite: Didmanidze O.N., Afanasev A.S., Khakimov R.T. Research of heat generation indicators of gas engines // Journal of Mining Institute. 2018. Vol. 229. p. 50-55. DOI: 10.25515/PMI.2018.1.50
Oil and gas
  • Date submitted
    2016-09-01
  • Date accepted
    2016-11-05
  • Date published
    2017-02-22

Research on technical and technological parameters of inclined drilling

Article preview

An analysis of operational capabilities of inclined drilling equipment and technology is presented. Two options of rotary drilling are reviewed as technical and technological solutions, facilitating construction of wells with difficult profiles. The first option implies that the driver unit of the drill bit is represented by downhole drilling motor, the second one utilizes sophisticated rotary steerable systems. Practical results of drilling wells with difficult profiles are presented. A quality assessment of drilling is provided through the example of comparing designed and actual trajectories, using different driver units for the drill bit, as well as properties of surrounding rocks, rheology of the drill fluid and other characteristics of dynamically active systems. A range of rotation speed has been determined that allows rotary steerable systems to have minimal oscillation amplitude of the bottom-hole assembly. Analysis of investigation results showed that the main source of oscillations is linked to bending and compressing stresses, caused by well deviations as well as rigidity of the drilling tool. In effect, in the bottom-hole assembly occur auto-oscillations, making it impossible to correct azimuth and zenith angles. Alteration of rigidity in the bottom part of the tool and drilling parameters, implying reduced rotation speed of the drill string and regulation of drill bit pressure, can partially solve this problem, though increase in rotation speed is limited by technical characteristics of existing top drive systems.

How to cite: Dvoinikov M.V. Research on technical and technological parameters of inclined drilling // Journal of Mining Institute. 2017. Vol. 223. p. 86-92. DOI: 10.18454/PMI.2017.1.86
Metallurgy and concentration
  • Date submitted
    2015-10-07
  • Date accepted
    2015-12-01
  • Date published
    2016-08-22

Evaluating possible industrial applications of combustible shales and shale ash wastes

Article preview

Today energy consumption is constantly growing while explored reserves of easily accessible oil are depleting, which is a reason why most countries tend to diversify their energy mix, develop non-hydrocarbon energy sources and use domestic types of fuel, including the low grade ones. Thereby interest is raised to such a source of hydrocarbons as combustible shales. Combustible shales appear to be one of the highest-potential types of organic raw materials, which may offset and in future even substitute oil products and gas. The paper is investigating behavior and structure of combustible shales during heat treatment in order to identify their possible industrial applications. A synchronous thermal analysis has been held, chemical composition of combustible shales’ mineral fraction and optimal conditions for shale fines briquetting have been determined.

How to cite: Kondrasheva N.K., Saltykova S.N. Evaluating possible industrial applications of combustible shales and shale ash wastes // Journal of Mining Institute. 2016. Vol. 220. p. 595-600. DOI: 10.18454/PMI.2016.4.595
Electromechanics and mechanical engineering
  • Date submitted
    2015-08-12
  • Date accepted
    2015-10-05
  • Date published
    2016-04-22

Energy efficient electromechanical systems of mining andtransport machines

Article preview

The problems of selecting the type and the structure of mining and transport machines elec-tromechanical control system, providing energy efficiency and performance. The conclusion about the most admissibility of variable frequency drives with induction motors and power semiconduc-tor converters was made. The methods and technical means of improving the energy efficiency of asynchronous electric motors due to the choice of increased power characteristics motors, design of special motor control algorithms and applying of semiconductor converters with active rectifi-ers, providing high power factor and improving of the electricity supply quality were reviewed. To improve the operational characteristics prompted use of diagnostic systems and residual life as-sessment of electrical equipment. Implementation of designs tied to the excavator-transport sector. The schemes of the excavator power drive, mining truck and implemented complex picture at coal mine are shown.

How to cite: Kozyaruk A.E. Energy efficient electromechanical systems of mining andtransport machines // Journal of Mining Institute. 2016. Vol. 218. p. 261-269.
Oil and gas
  • Date submitted
    2015-08-03
  • Date accepted
    2015-10-06
  • Date published
    2016-04-22

Technical and technological solutions to ensure stability of downhole drilling motors

Article preview

The article shows research analysis of engineering and technological solutions that aimed at improving the efficiency of drilling wells using optimization of dynamic of work downhole drill-ing motors. As the technical solutions that reduce vibration, considered two options of construc-tion of the power section. A first embodiment involves the production of a hollow rotor which can reduce its moment of inertia. The second solution is the production of modular rotor, which are changing the eccentricity (misalignment) of rotating parts of the engine. The research of fluctuations throughout the length of the power section of the working bodies and the spindle of the engine, taking into account changes in its energy characteristics has been con-ducted to ensure stable operation of the engine in a well, identifying optimal loading parameters. Indicators of shaft speed ensuring minimum vibration amplitude of the engine has been Iden-tified. Optimal speed range of the rotor to prevent buckling of the BHA and to sustain its operation is shown to be between 15-20 % of the frequency of the engine at idle. The maximum reduction in speed during the drilling process should not exceed 30 % by conducted research.

How to cite: Dvoinikov M.V., Muraev Y.D. Technical and technological solutions to ensure stability of downhole drilling motors // Journal of Mining Institute. 2016. Vol. 218. p. 198-205.
Mining machine, electrical engineering and electromechanics
  • Date submitted
    2010-07-06
  • Date accepted
    2010-09-14
  • Date published
    2011-03-21

Electromechanical processes in electric drives of mountain equipment on the basis of the synchronous electric motor

Article preview

The description is given and the function chart of the bench installation is resulted, allowing to reproduce static and dynamic modes of adjustable electric drives of an alternating current. The modes considered during experimental researches of the electric drive on the basis of the synchronous electric motor, working in a mode of ventilniy electric motor are listed. Conclusions are drawn on character of course of dynamic modes, comparison of the electric drive to the synchronous electric motor and the electric drive of a direct current with the subordinated regulation is given.

How to cite: Sviridenko A.O. Electromechanical processes in electric drives of mountain equipment on the basis of the synchronous electric motor // Journal of Mining Institute. 2011. Vol. 189. p. 103-106.
Mining machine, electrical engineering and electromechanics
  • Date submitted
    2010-07-08
  • Date accepted
    2010-09-02
  • Date published
    2011-03-21

The autoresonant asynchronous electric drive of dynamically counterbalanced drilling string on carrying cable with swinging movement fluctuations amplitude stabilization

Article preview

The algorithm of resonant fluctuations amplitude stabilization of dynamically counterbalanced drilling string on carrying cable with swinging movement of jackbit is developed. Imitating modeling of the resonant asynchronous electric drive with swinging movement of jackbit with the frequency converter in various operating modes is resulted.

How to cite: Zagrivnyi E.A., Ivanik V.V. The autoresonant asynchronous electric drive of dynamically counterbalanced drilling string on carrying cable with swinging movement fluctuations amplitude stabilization // Journal of Mining Institute. 2011. Vol. 189. p. 91-94.
Mining machine, electrical engineering and electromechanics
  • Date submitted
    2010-07-26
  • Date accepted
    2010-09-14
  • Date published
    2011-03-21

Algorithm of control of the electric drive with ventilniy electric motor and the converter of frequency with the active rectifier

Article preview

Advantages of application of the active rectifier as a part of converters of frequency for powerful drives with ventilniy electric motors are considered. The mathematical description of the processes proceeding in a power part of the active rectifier is given. The scheme of a drive with a vector control system with the gage of position of a rotor and the active rectifier is presented, schedules of power consumption and a current by a drive with the active rectifier are resulted.

How to cite: Emelyanov A.P., Sviridenko A.O. Algorithm of control of the electric drive with ventilniy electric motor and the converter of frequency with the active rectifier // Journal of Mining Institute. 2011. Vol. 189. p. 87-90.
Electromechanics and mechanical engineering
  • Date submitted
    1953-07-21
  • Date accepted
    1953-09-12
  • Date published
    1954-12-04

К вопросу автоматизации рудничного подъема с асинхронным приводом при скипах с донной разгрузкой

Article preview

Автоматизация подъема при скипах с донной разгрузкой в период замедления может быть осуществлена применением режима динамиче­ского торможения асинхронного подъемного двигателя. На рис. 1 расчетная диаграмма скорости в период замедления t 3 изо­бражена пунктирной линией λр. В период разгрузки t 4 ' предположена постоянная скорость v 3 (линия рφ), которая в течение периода t 4 "па­дает до нуля по линии ϕѱ. Согласно диаграмме усилий асинхронной машины, изображенной на рис. 2, разгон подъемного двигателя в период пуска происходит по ло­маной линии BCDEFGHIKLT,варьирующей около заданного (расчет­ного) значения усилия F 1 как около среднего значения между крайними пределами F 1 ' и F 1 ". По окончании периода пуска наступает период полного хода, в тече­ние которого движущее усилие следует за всеми изменениями статиче­ского усилия. В предположении статически неуравновешенной системы подъема статическое усилие, а следовательно, и движущее усилие, раз­виваемое двигателем, работающим на естественной характеристике R 2 , пусть изменяется от значения F' s 2 в начале периода полного хода (точ­ка N')до величины F" s 2 в конце этого периода (точка N). По окончании периода полного хода наступает период замедления t 3 , в течение кото­рого предположен тормозной режим, осуществляемый в виде динамиче­ского торможения. Асинхронная машина с двигательного режима на характеристике R 2 при скорости v н переводится на динамический режим путем переключения статора с переменного тока на постоянный.

How to cite: Unknown // Journal of Mining Institute. 1954. Vol. № 1 32. p. 10.
Electromechanics and mechanical engineering
  • Date submitted
    1953-07-25
  • Date accepted
    1953-09-19
  • Date published
    1954-12-04

Автоматизация шахтного грузового подъема с асинхронным приводом

Article preview

Преимущества автоматического подъема, заключающиеся в увели­чении производительности, повышении надежности работы и безопасно­сти, а также освобождении труда высококвалифицированного маши­ниста и большое распространение в Советском Союзе подъемных уста­новок с асинхронными двигателями делают проблему автоматизации подъема с асинхронным приводом весьма актуальной. Решение этой проблемы начато с 1932—1933 гг. Однако, несмотря на двадцатилетний срок, истекший с момента первых исследований по этому вопросу, до сих пор задача полностью не разрешена. Причина этого кроется в неблагоприятных механических свойствах асинхронного двигателя, затрудняющих автоматизацию подъема, а также в известной односторонности предлагавшихся до сих пор решений, основанных, как правило, на использовании в период замедления колодочных механиче­ских тормозов. Несмотря на многочисленные исследования, проведенные в основном В. Б. Уманским и В. С. Тулиным, создать хорошие регуля­торы хода, воздействующие на механический тормоз подъемной машины, до сих пор не удалось. И если автоматизация пуска подъемной машины является на сегодня решенной, то вопрос управления подъемной маши­ной в период замедления требует еще теоретической и эксперименталь­ной проработки. Анализ работы различных систем автоматизации подъема, основан­ный на сопоставлении механических характеристик различных тормоз­ных устройств, позволяет критически оценить эти системы и наметить новые направления в решении задачи автоматизации грузового подъема с асинхронным приводом.

How to cite: Unknown // Journal of Mining Institute. 1954. Vol. № 1 32. p. 16.
Mining
  • Date submitted
    1951-07-05
  • Date accepted
    1951-09-25
  • Date published
    1952-03-26

Testing of an electric motor with moisture-resistant insulation of a submersible motor-pump with a capacity of Q = 100 m³/hour at a pressure of H = 100 m

Article preview

This work was completed in 1950 as a joint venture between the Department of Mining Electrical Engineering of the Leningrad Mining Institute and one of the coal trusts. The electric motor of a submersible motor-pump designed for pumping water from wells in the conditions of the Leningrad coal deposit was tested. Both the pump and the electric motor are completely immersed in water during operation, which significantly distinguishes the design of this motor-pump from all existing ones, in which the electric motor is installed at the top of the wellhead and connected to the pump submerged in water by means of a long shaft (motor-pumps of the ATN type, etc.). The electric motor is made with moisture-resistant insulation of an open type without a hermetic shell.

How to cite: Shklyarskii L.F. Testing of an electric motor with moisture-resistant insulation of a submersible motor-pump with a capacity of Q = 100 m³/hour at a pressure of H = 100 m // Journal of Mining Institute. 1952. Vol. № 1 26. p. 21-28.
Mining
  • Date submitted
    1951-07-12
  • Date accepted
    1951-09-03
  • Date published
    1952-12-23

Электрическая схема подъемной установки с асинхронным приводом

Article preview

Для правильного функционирования подъемной установки прежде всего должно быть обеспечено исправное действие смазки главных подшипников, осуществляемой при помощи двух маслонасосов, из кото­рых один рабочий, а другой запасной. Управление маслонасосами производится при помощи переключателя маслонасосов. После замыкания цепи катушки 1РП замкнется ее контакт 1РП и тем самым перекроет разомкнутый при рабочих положениях командо-контроллера контакт КК-0, обеспечивая замыкание цепи ка­тушки 1РП до тех пор, пока эта цепь не будет разорвана конечным выключателем ЗВК, размыкаемым при окончании подъема соответст­венной клетью. При замкнутой цепи катушки реле 1РП окажется замкнутым кон­такт этого реле 1РП, находящийся в цепи катушек реверсивных контакторов В и И. В результате этого в данном месте получится замыкание цепи катушек указанных реверсивных контакторов.

How to cite: Unknown // Journal of Mining Institute. 1952. Vol. № 1 27. p. 59.
Mining
  • Date submitted
    1950-07-21
  • Date accepted
    1950-09-18
  • Date published
    1951-04-30

Testing the electric motors with new moisture-resistant insulation of submersible motor-pumps with a capacity of Q = 30 m3/hour

Article preview

The present work is the result of creative collaboration of the Department of Mining Electrical Engineering of the Leningrad Mining Institute with one of the coal trusts. Electric motors of two submersible motor-pumps were tested. The design data of both motor-pumps are absolutely identical. Only their electrical parts differ slightly: the stator of the electric motor of one of them (motor-pump No. 7) has slightly larger slot dimensions than the stator of the electric motor of the other motor-pump (motor-pump No. 9). Therefore, 16 wires are laid in each slot of the stator of the electric motor of motor-pump No. 7, and 11 wires are laid in the electric motor of motor-pump No. 9. The main data of the submersible motor-pumps with a star connection of the stator winding of the electric motor are as follows: electric motor power on the shaft Pn = 9.2 kW; voltage Un = 380 V; revolutions n = 2900 rpm. Three-phase asynchronous short-circuited electric motor (Fig. 1); pump capacity Qn = 30 m3/hour; pump head Na = 50 m. The total height of the motor-pump is 1400 mm, the height of the electric motor is 930 mm, the diameter of the unit is 183 mm. The electrical and mechanical parts of the submersible motor-pumps are manufactured by the assembly and mechanical workshops of the trust. Submersible motor-pumps of the proposed design, used for pumping water from wells, compare favorably with those currently existing in the following features.

How to cite: Shklyarskii L.F. Testing the electric motors with new moisture-resistant insulation of submersible motor-pumps with a capacity of Q = 30 m3/hour // Journal of Mining Institute. 1951. Vol. № 1 25. p. 89-94.