hi boy
"Ugol" magazin

SAFETY


Original Paper

UDC 622.83.35:622.411.33©I.A. Tarasenko, A.A. Kulikova, A.M. Kovaleva, 2022

ISSN 0041-5790 (Print) • ISSN 2412-8333 (Online) • Ugol’ – Russian Coal Journal, 2022, № 11, pp. 84-88

DOI: http://dx.doi.org/10.18796/0041-5790-2022-11-84-88

Title

ON THE ISSUE OF ASSESSING THE AUTOMATION OF CONTROL OF THE PARAMETERS OF THE METHANE-AIR MIXTURE

Authors

Tarasenko I.A.1, Kulikova A.A.2, Kovaleva A.M.2

1AAA ENGINEERING + LLC, Moscow, 127015, Russian Federation

21National University of Science and Technology "MISIS" (NUST “MISIS”), Moscow, 119049, Russian Federation

Authors Information

Tarasenko I.A.,Engineer-designer of automation systems and communication networks, e-mail: tarasenko_k_2020@list.ru

Kulikova A.A.,Senior Lecturer, e-mail: alexaza_@mail.ru;

Kovaleva A.M., Student, e-mail: asya-kovaleva2001@yandex.ru

Abstract

The analysis of the patent search on the issues of degassing of coal mines has been carried out. It has been established that the greatest inventive activity in matters of degassing is observed in Russia (42%), China (36%), USA (10%), Germany (7%). The development of an automation system for monitoring the parameters of the methane-air mixture is a growing industry. Taking into account the current geopolitical situation, when developing a system for automating the control of methane-air mixture parameters, it is worth giving preference to a domestic manufacturer in view of the problems that have arisen with the supply of equipment, its components and the resulting difficulty in operating such systems.It is proposed to use: Controller Granch SBTC2 together with the controller «MC8» and the expansion module «ME 20.2»; proportional-integral-differentiating (PID) regulation; Ethernet interface; Modbus protocol; modern actuating and measuring mechanisms.As a result of the use of PID control, the number and magnitude of overshoots of the operation of the electric motors of the pumps of the vacuum pumping station will decrease, which will ensure the optimal operation of the electric motors and improve the quality and reliability of the electrical equipment.

Keywords

Degassing, Patent holders, Automated control system, Control of methane-air mixture parameters, Proportional-integral-differentiating regulator, Electric motors of pumps of vacuum pumping stations.

References

1. Slastunov S., Kolikov K., Batugin A., Sadov A. & Khautiev A. Improvement of Intensive In-Seam Gas Drainage Technology at Kirova Mine in Kuznetsk Coal Basin. Energies, 2022, (15), 1047.

2. Cheng L., Guo H. &Lin H. Evolutionary model of coal mine safety system based on multi-agent modeling. Process Safety and Environmental Protection, 2021, (147), pp. 1193-1200.

3. Batugin A. A proposed classification of the earth’s crustal areas by the level of geodynamic threat. Geodesy and Geodynamics, 2021, (12), pp. 21-30.

4. Pavlenko M.V. & Skopintseva O.V. Role of capillary forces in vibratory action on hydraulically treated gas-saturated coal. Gornyj informatsionno-analiticheskij byulleten, 2019, (3), pp. 43–50. (In Russ.).

5. Balovtsev S.V. & Skopintseva O.V. Assessment of the influence of returned mines on aerological risks at coal mines. Gornyj informatsionno-analiticheskij byulleten, 2021, (2–1), pp. 40-53. (In Russ.).

6. Zinovieva O.M., Kuznetsov D.S., Merkulova A.M. & Smirnova N.A. Digitalization of industrial safety management systems in mining. Gornyj informatsionno-analiticheskij byulleten, 2021, (2–1), pp. 113-123. (In Russ.).

7. Lekontsev Yu.M., Ushakov S.Yu. & Mezentsev Yu.B. Ways to increase the efficiency of coal seam degassing. Ugol, 2020, (4), pp. 26-28. (In Russ.).DOI: 10.18796/0041-5790-2020-4-26-28.

8. Baymukhametov S.K., Imashev A.Zh., Mullagaliev F.A., Mullagalieva L.F. & Kolikov K.S. Low-permeable gas-bearing and outburst-hazardous coal seam mining in the Karaganda Coal Basin. Gornyj informatsionno-analiticheskij byulleten, 2021, (10-1), pp. 124-136. (In Russ.).

9. Order of Rostekhnadzor dated08.12.2020. № 506 «On Approval of the Federal Norms and Rules in the Field of Industrial Safety «Instruction on the aerological safety of coal mines». (In Russ.).

10. Balovtsev S.V., Skopintseva O.V. & Kulikova E.Yu. Hierarchical structure of aerological risks in coal mines. Ustojchivoe razvitie gornykh territorij, 2022, (14), pp. 276-285. (In Russ.).

11. Zakharov V.N. & Kubrin S.S. Automation of the processes of degassing and utilization of methane in the development of methane-bearing coal seams. Ugol, 2010, (7), pp. 28-30. Available at: http://www.ugolinfo.ru/Free/07010.pdf (accessed 15.10.2022). (In Russ.).

12. Software and hardware complex “KONTAR”. Engineer's Handbook. Moscow, "Moscow Plant of Thermal Automatics"JSC, 2017, 104 p. (In Russ.).

13. Kubrin S.S., Mosievsky A.A., Zakorshmenny I.M., Reshetnyak S.N. & Maksimenko Yu.M. Ways to improve the energy efficiency of underground electric networks of high-performance coal mines. Ugol’, 2022, (2), pp. 4-9. (In Russ.). DOI: 10.18796/0041-5790-2022-2-4-9.

14. Kubrin S.S., Reshetnyak S.N., Zakorshmenny I.M. & Karpenko S.M. Simulation modeling of equipment operating modes of complex mechanized coal mine face. Ustojchivoe razvitie gornykh territorij, 2022, (14), pp. 286- 294. (In Russ.).

For citation

Tarasenko I.A., Kulikova A.A. & Kovaleva A.M. Ontheissueofassessingtheautomationofcontroloftheparametersofthemethane-airmixture.Ugol’, 2022, (11), pp. 84-88. (In Russ.). DOI: 10.18796/0041-5790-2022-11-84-88.

Paper info

Received September 20, 2022

Reviewed September 30, 2022

Accepted October 26, 2022

SPECIAL ISSUE




Hot from the press
Partners