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рудничная вентиляция

Mining
  • Date submitted
    2021-06-01
  • Date accepted
    2021-07-27
  • Date published
    2021-10-21

Indicator assessment of the reliability of mine ventilation and degassing systems functioning

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The gas emission control in the mines is operated by ventilation and degassing systems that ensure the aerological safety of the mines or minimize the aerological risks. The ventilation system of the mine and its individual sites includes a significant number of technical devices and equipment, and the air tubes are mainly mining workings, the condition of which determines the quality of the ventilation network (its capacity) and depends on a number of mining factors. Similarly, one of the most important elements of the degassing system, which includes its own chain of technological equipment, are wells, and in some cases, mining workings. Thus, mine ventilation and degassing systems cannot be attributed to purely technical systems, since they include mining elements characterized by high variability of the determining parameters. To assess their reliability, it is necessary to use various combined methods that include additional characteristics in relation to the mining component. At the same time, the reliability of technical devices that ensure the functioning of mine ventilation and degassing systems largely determines the efficiency (stability and reliability) of these systems and, consequently, affects the level of aerological risks. The described approach to assessing the reliability of ventilation and degassing systems of coal mines when analyzing aerological risks is based on the developed system of risk indicators for the methane factor and will allow determining the risk dynamics in automatic mode based on monitoring the parameters of the ventilation and degassing system state.

How to cite: Kaledina N.O., Malashkina V.A. Indicator assessment of the reliability of mine ventilation and degassing systems functioning // Journal of Mining Institute. 2021. Vol. 250. p. 553-561. DOI: 10.31897/PMI.2021.4.8
Mining
  • Date submitted
    2020-05-26
  • Date accepted
    2020-09-23
  • Date published
    2020-12-29

Automated ventilation control in mines. Challenges, state of the art, areas for improvement

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The article is divided into three main parts. The first part provides an overview of the existing literature on theoretical methods for calculating the optimal air distribution in mines according to the criteria of energy efficiency and providing all sections of mines with the required amount of air. It is shown that by the current moment there are many different formulations of the problem of searching the optimal air distribution, many different approaches and methods for optimizing air distribution have been developed. The case of a single (main) fan is most fully investigated, while for many fans a number of issues still remain unresolved. The second part is devoted to the review of existing methods and examples of the automated mine ventilation control systems implementation in Russia and abroad. Two of the most well-known concepts for the development of such systems are automated ventilation control systems (AVCS) in Russia and the CIS countries and Ventilation on demand (VOD) abroad. The main strategies of ventilation management in the framework of the AVCS and VOD concepts are described and also the key differences between them are shown. One of the key differences between AVCS and VOD today is the automatic determination of the operation parameters of fan units and ventilation doors using the optimal control algorithm, which is an integral part of the AVCS. The third part of the article describes the optimal control algorithm developed by the team of the Mining Institute of the Ural Branch of the Russian Academy of Sciences with the participation of the authors of the article. In this algorithm, the search for optimal air distribution is carried out by the system in a fully automated mode in real time using algorithms programmed into the microcontrollers of fans and ventilation doors. Minimization of energy consumption is achieved due to the most efficient selection of the fan speed and the rate of ventilation doors opening and also due to the air distribution shift control and the partial air recirculation systems introduction. It is noted that currently the available literature poorly covers the issue related to emergency operation modes ventilation systems of mines and also with the adaptation of automated control systems to different mining methods. According to the authors, further development of automated ventilation control systems should be carried out, in particular, in these two areas.

How to cite: Semin M.A., Grishin E.L., Levin L.Y., Zaitsev A.V. Automated ventilation control in mines. Challenges, state of the art, areas for improvement // Journal of Mining Institute. 2020. Vol. 246. p. 623-632. DOI: 10.31897/PMI.2020.6.4
Mining
  • Date submitted
    2020-05-12
  • Date accepted
    2020-09-22
  • Date published
    2020-11-24

Design features of coal mines ventilation using a room-and-pillar development system

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The safety of mining operations in coal mines for aerological factors depends on the quality of accepted and implemented ventilation design solutions. The current “Design Manual of coal mine ventilation” do not take into account the features of room-and-pillar development systems used in Russia. This increases the risk of explosions, fires, and gassing. The detailed study of foreign experience in designing ventilation for the considered development systems e of coal deposits allowed to formulate recommendations on the ventilation scheme organization for coal mines using a room-and-pillar development system and the procedure for ventilation during multi-entry gateroad development. Observations have shown that the use of the existing Russian procedure for airing mining sites with a room-and-pillar development system complicates the emergency rescue operations conduct. Low speeds and multidirectional air movement, difficult heat outflow, and the abandonment of coal pillars increase the risk of occurrence and late detection of endogenous fire. The results of numerical modeling have shown that the installation (parallel to the drifts) of ventilation structures in inter-chamber pillars will increase the reliability of ventilation by transferring the ventilation scheme from a complex diagonal to a complex parallel. It will also reduce the amount of air required for the mine site and the total aerodynamic drag. The research made it possible to formulate requirements for the design procedure for coal mines ventilation using a room-and-pillar development system, which consist in the order of working out blocks in the panel, and also the additional use of ventilation structures (light brattice clothes or blowing line brattice).

How to cite: Kobylkin S.S., Kharisov A.R. Design features of coal mines ventilation using a room-and-pillar development system // Journal of Mining Institute. 2020. Vol. 245. p. 531-538. DOI: 10.31897/PMI.2020.5.4
Geoecology and occupational health and safety
  • Date submitted
    2018-07-15
  • Date accepted
    2018-09-07
  • Date published
    2018-12-21

Justification of rational methods for provision of air to faces of operating coal mines of Vietnam during deepening of mines

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Based on the analysis of the mining and geological conditions for developing coal deposits in Vietnam, the existing mining safety regulations, the application of methods for calculating the air supply of working and development faces using the methane factor and modern methods of mathematical modeling of the ventilation of mines threr was developed the procedure for analyzing the efficiency of air distribution management considering the proposed indicator - energy efficiency coefficient for ventilation systems, determined by the efficiency of air use and energy consumption. Relations have been obtained that determine the relationship between the aerodynamic resistance of negative regulators, the number of simultaneously developed working and development faces, the performance of main ventilation fans and the consumed electric power.

How to cite: Gendler S.G., Nguen T.K. Justification of rational methods for provision of air to faces of operating coal mines of Vietnam during deepening of mines // Journal of Mining Institute. 2018. Vol. 234. p. 652-657. DOI: 10.31897/PMI.2018.6.652
Development of solid mineral deposits
  • Date submitted
    2010-07-12
  • Date accepted
    2010-09-14
  • Date published
    2011-03-21

Principles of an automatic control system of ventilation creation the kuznetsovsky railway tunnel

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For effective ventilation Kuznetsovsky railway tunnel the longitudinal scheme of ventilation based on use of jet fans is offered. It is shown that use of the offered scheme of ventilation at influence of natural draft and piston effect of trains is impossible without an automatic control system of ventilation (ACSV). The principles of work ACSV taking into consideration natural and operational factors are proved.

How to cite: Gendler S.G., Pleskunov V.A. Principles of an automatic control system of ventilation creation the kuznetsovsky railway tunnel // Journal of Mining Institute. 2011. Vol. 189. p. 134-137.
Electromechanics and mechanical engineering
  • Date submitted
    1953-07-29
  • Date accepted
    1953-09-01
  • Date published
    1954-12-04

Проблемы автоматизации рудничной электровозной откатки

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В настоящее время в условиях угольных шахт основным видом транспорта по главным горизонтальным выработкам является электро­возная откатка. На газовых шахтах откатка производится электрово­зами аккумуляторными, а на шахтах, не опасных по газу и пыли, — контактными. Такой вид транспорта в современных условиях — при ком­плексной механизации угледобычи — обладает рядом существенных не­достатков. Зачастую он является причиной нарушения непрерывности процесса транспортирования полезного ископаемого. Часто имеют место нарушения графиков движения. Для современных крупных шахт — при комплексной механизации угледобычи с полной автоматизацией — наи­более прогрессивным видом транспорта является конвейерный. Он легче поддается автоматизации, позволяет сохранять непрерывность процесса транспортирования полезного ископаемого от забоя до железнодорож­ных бункеров или обогатительных фабрик и является менее опасным для обслуживающего персонала.

How to cite: Unknown // Journal of Mining Institute. 1954. Vol. № 1 32. p. 48.