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well degassing

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
    2019-05-30
  • Date accepted
    2019-09-04
  • Date published
    2020-02-25

Prospects for industrial methane production in the mine n.a. V.M.Bazhanov using vertical surface wells

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The estimated methane resources in the coal stratum of Donbass are 798.5 billion m 3 , including 119.5 billion m 3 in the Donetsk-Makeevsky area. Such significant potential implies that methane can be used not only for industrial production and energy purposes but also as a commodity for the chemical industry. However, in practice, commercial production of methane from coal seams, as is done in the fields of the USA, Canada, India, and China, is not carried out, and methane, obtained as a by-product, is utilized for ensuring the safety of the main technological processes for coal mining. The main reasons for this are the difficult mining and geological conditions of bedding, low thickness and permeability, which does not allow to separate methane production into an independent type of activity due to its low profitability, especially with the use of new technologies based on hydraulic fracturing of coal seams. The assessment of the possibility of industrial methane production in the mine n.a. V.M.Bazhanov in the Donetsk-Makeevsky area of Donbass, which reserves equal to 23.7 billion m 3 , showed that a significant part of the methane reserves is concentrated in coal seams and interlayers with a gas content of 18.5-20.7 m 3 /m 3 . Moreover, in the host rocks, methane is practically in a liberated state. This circumstance makes possible the commercial production of methane for its utilization from the unloaded rock mass by wells drilled from the surface, without the use of hydraulic fracturing technology. The paper discusses the technology of methane extraction by a degassing well drilled from the surface into a coal-bearing stratum unloaded from rock pressure in a mining field of the 4th eastern face of the m 3 seam of the mine n.a. V.M.Bazhanov and its subsequent use as the fuel of an electric generator. It is shown that over the entire period of operation of the pilot well, the volume of actually produced methane exceeded the design value by 23 %, and the cost of the gas produced amounted to 1535 rubles per 1000 m 3 , which is more than 3 times lower than the market price for natural gas for consumers in the Russian Federation. This made it possible to make a conclusion about the possibility of industrial extraction of mine methane using vertical surface wells for its subsequent utilization in power plants, which does not imply the usage of hydraulic fracturing technology.

How to cite: Alabev V.R., Ashihmin V.D., Plaksienko O.V., Tishin R.A. Prospects for industrial methane production in the mine n.a. V.M.Bazhanov using vertical surface wells // Journal of Mining Institute. 2020. Vol. 241 . p. 3-9. DOI: 10.31897/PMI.2020.1.3
Geoecology and occupational health and safety
  • Date submitted
    2016-09-06
  • Date accepted
    2016-11-13
  • Date published
    2017-02-22

Justified selection of a seam degassing technology to ensure safety of intensive coal mining

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The paper contains main aspects of methodological approach to objective analytic assessment of maximum permissible output of the mine faces from the viewpoint of gas factor. Analytic forecast is centered around the assessment of methane inflow into the face area from all possible sources, based on fundamental physical laws, modern tools of mathematical modeling and in-situ tests of main properties and state parameters of the gas-bearing coal formation. Objective and reliable estimation of permissible outputs is a starting point for justified selection of a seam degassing technology, that has to be based on time factor and predicted value of gas recovery from a coal seam to a degassing well. Recommendations have been formulated on the selection of degassing technology for the coal seam «Boldyrevsky» of the Kirov mine, based on the use of cutting-edge technological schemes (hydraulic fracture, carried out from development workings, etc.), successfully implemented on the mentioned site.

How to cite: Slastunov S.V., Yutyaev E.P. Justified selection of a seam degassing technology to ensure safety of intensive coal mining // Journal of Mining Institute. 2017. Vol. 223 . p. 125-130. DOI: 10.18454/PMI.2017.1.125
Mining
  • Date submitted
    2015-10-01
  • Date accepted
    2015-12-11
  • Date published
    2016-08-22

The technology of extracting gaseous fuel based on comprehensive in situ gasification and coalbed degassing

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The study considers a comprehensive technology (designed and patented by the authors) of developing coal and methane deposits which combines in situ gasification of lower coalbeds in the suite of rock bump hazardous gassy beds, extraction of coal methane and mechanized mining of coal. The first stage of the technology consists in mining gaseous fuel that enables one to extract up to 15-20 % of total energy from the suite of coalbeds. Geodynamic zoning is used to select positions for boring wells. Using the suggested technology makes it possible to solve a number of tasks simultaneously. First of all that is extracting gaseous fuel from the suite of coalbeds without running any mining works while retaining principal coalbeds in the suite and preparing them for future processing (unloading and degassing). During the first phase the methane-coal deposit works as a gas deposit only, the gas having two sources – extracted methane (which includes its locked forms, absorbed and adsorbed) and the products of partial incineration of thin coalbeds, riders and seams from thee suite. The second stage consists in deep degassing and unloading of coal beds which sharply reduces the hazards of methane explosion and rock bumps, thus increasing the productivity of mechanized coal mining. During the second stage coal is mined in long poles with the account of degassing and unloading of coal beds, plus the data on gas dynamic structure of coal rock massif.

How to cite: Shabarov A.N., Tsirel S.V., Goncharov E.V., Zubkov V.V. The technology of extracting gaseous fuel based on comprehensive in situ gasification and coalbed degassing // Journal of Mining Institute. 2016. Vol. 220 . p. 545-550. DOI: 10.18454/PMI.2016.4.545
Mining
  • Date submitted
    2014-12-28
  • Date accepted
    2015-02-21
  • Date published
    2015-12-25

Modeling of rock massif geomechanical state at gas extraction from coal seams

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The article describes the method of modeling a coal seam stress-strain state and an enclosing rock massif when degasified. An approach to defining the model input parameters, calculated with the porosity and gas pore pressure coefficient, was shown. The importance of preliminary calculations, indicating possible coal seam shrinkage and surface subsidence was underlined. It shows formation mechanism for coal seam zones with elevated gas pressure, where gas recovery is efficient.

How to cite: Mustafin M.G. Modeling of rock massif geomechanical state at gas extraction from coal seams // Journal of Mining Institute. 2015. Vol. 216 . p. 57-61.
Problems in geodynamic safety in the exploration of solid deposits
  • Date submitted
    2009-10-25
  • Date accepted
    2009-12-19
  • Date published
    2010-09-22

Principal technologies for prevention of natural dangers at coal mines

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Modern mining of mineral resources to be the industry accepted by the society must meet the criteria for sustainable development. Work safety is its important element, which is a particular sphere in underground coal mines in the view of natural hazards occurring numerously, including the catastrophic failures. Among them are gas hazard, fires and rock burst hazard. The selected methodological solutions in terms of their recognition and technologies applicable for the actively combat of these threats, which are featured by high efficiency, have been pointed out.

How to cite: Dubinsky J. Principal technologies for prevention of natural dangers at coal mines // Journal of Mining Institute. 2010. Vol. 188 . p. 9-14.
Problems in geodynamic safety in the exploration of solid deposits
  • Date submitted
    2009-10-18
  • Date accepted
    2009-12-17
  • Date published
    2010-09-22

Reuse of development workings as an element of providing the effective coal output

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The article contains the results of application in a coal mine of a combined way for protection and support of development workings. This method combines a frame support, anchors and a cast support strip erected behind the longwale. The geomechanical substantiation of technological parameters, regulations and the field for efficient use of this method are given. Its introduction has allowed to increase the loads on longwale and to lower labour content and expenses for maintenance of butt entries.

How to cite: Ilyashov M.A. Reuse of development workings as an element of providing the effective coal output // Journal of Mining Institute. 2010. Vol. 188 . p. 66-69.
Problems in geodynamic safety in the exploration of solid deposits
  • Date submitted
    2009-10-12
  • Date accepted
    2009-12-19
  • Date published
    2010-09-22

Preventive measures of gas-dynamic phenomena in the workings drivage on the rockburst- outburst-hazardous seams under extremely complicated geological and mining conditions

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A complex of measures preventing the manifestation of rockbursts and sudden outbursts of coal and gas has been developed. Criteria of forecasting, an assessment of efficiency of the preventive measures are suggested, as well as the necessary technical facilities and technologies.

How to cite: Kostromin V.P. Preventive measures of gas-dynamic phenomena in the workings drivage on the rockburst- outburst-hazardous seams under extremely complicated geological and mining conditions // Journal of Mining Institute. 2010. Vol. 188 . p. 109-111.