INTERDEPENDENCIES BETWEEN GEOMECHANICAL PROCESSES AND EMISSION OF METHANE AND RADON DECAY PRODUCTS INTO UNDERGROUND WORKINGS OF THE COAL MINES

UDC 622.831.312 : 622.817

INTERDEPENDENCIES BETWEEN GEOMECHANICAL PROCESSES AND EMISSION OF METHANE AND RADON DECAY PRODUCTS INTO UNDERGROUND WORKINGS OF THE COAL MINES

Bulat, AF; Slashchov, IN; Slashchovа, EA

Authors:

A. F. Bulat, Acad. NASU, D. Sc. (Tech.), Professor,

I.N. Slashchov, Ph.D. (Tech.), Senior Researcher,

E.A. Slashchovа, Ph.D. (Tech.), Senior Researcher

(IGTM NAS of Ukraine)

Abstract.

Purpose of this article is to specify conditions for joint filtration of methane and radon decay products and changes of their physical parameter in the workings of coal mines.

A method for numerical simulation of methane transfer and radon isotope from areas with high rock pressure through the cracks in zones with rock shift and stretching into the mine workings was proposed. To describe of gas transfer processes, an integrated form of the Darcy law for a case of radial steady flow was used. Interdependencies between methane and radon isotope contents in the atmosphere of mine workings were investigated in-situ.

The author proposes to assess conditions for the joint methane transfer and radon aerosol through the rocks with the help of minimum principal strains of elements in the geomechanical model and deformation tensor deviator which define compression, shift and stretching parameters of the pore-fractured space. It is for the first time when specific physical features of joint emission of methane and radon decay products into the mine working are disclosed: concentration of the Po218 α-radiation increases depending on the distance to the development heading and its Po218 intensity is 2-4 times higher than intensity of α-radiation of Pb214 and Bi214 isotopes; there is a stable interdependency between dynamics of changes in methane concentration and reduced concentration of radon decay products when deviation of concentration change is within ± 20 % from the mean value, and abrupt peaks of concentration changing above 40 % can be explained by different sources of formation of methane and radon-aerosol flows and different rates of their transfer through the pores and cracks in tectonically disturbed zones of the rock massif; emission of the Po218 radionuclide is weakly connected with radiation of the Pb214 and Bi214 α-particles, and, conversely, between Pb214 and Bi214 emissions with a longer half-life a strong interdependency is observed. These interdependencies can be a basis for designing new methods for prediction manifestations of geomechanical and gasdynamic processes.

Keywords:

Methane Filtering, Radon Decay Products, Geomechanical Processes, Gasdynamic Processes, Modeling of Rock Massif, Prediction of Dangerous Phenomena

References:

1.  Bulat, A.F., Perepelytsya, V.H., Yalanskyy, A.A., Palamarchuk, T.A., Yefremov, O.I., and Zabolotniy, A.N. (2013), “Teoretychne obgruntuvannya zastosuvannya metodu radiatsiynoho vyprominyuvannya yak faktora vy-robnychoho kontrolyu stanu vuhleporodnoho masyvu”, Geo-TechnicalMechanics, no. 66, pp. 3-14, UA

2. Kabanov, M.V. (1997), Regionalnyy monitoring atmosfery [Regional monitoring of the atmosphere], in Zuyev, V.Ye. (ed.), «Spektr» Institut optiki atmosfery SO RAN, Tomsk, Russia.

3. Van der Spoel, W.H., Van der Graaf, E.R. and de Meijer, R.J. (1999), “Diffusive transport of radon in a column of moisturized sand”, Health Phys., vol. 77, № 2, pp. 163-177.

4. Koarashi, J., Amano, H., Iida T. et al. (2000), “Development of Model for Dynamical Behavior oil of Water and Rn in Unsaturated Soil”, Harmonization of Radiation, Human Life and the Ecosystem: Proc. of 10th Intern. Congr. Intern. Rad. Prot. Association (IRPA-10), Hiroshima, Japan, pp. 16-23.

5. Tоgо, L. and Gheorghe, R. (1999), “Mathematical simulation of radon migration in porous materials”, Proc. IRPA Regional Congr. on Rad. Prot. in Central Europe, Budapest, Hungary, pp. 606-615.

6. Fadeyev, A.B. (1987), Metod konechnykh elementov v geomekhanike [The finite element method in geomechanics], Nedra, Moscow, SU.

7. Hwang, C.T., Morgenstern, N.R. and Murray, D.W. (1971), “On solution of plain strain consolidation problems by finite element methods”, Can. Geotech., № 109. pp. 109-118.

8. Slaschev, I.N. (2013) “The use of information technology to increase the efficiency and safety of mining operations”, Coal of Ukraine, vol. 2, pp. 40-43, UA.

9. Slaschev, I.N., Shevchenko, V.G. and Slashchov, A.I. (2013), “Optimized information system for on-line predicting of geomechanical process behavior and ensuring proper decision-making on the mine safety”, Geo-Technical Mechanics, no. 112, pp. 129-144, UA.

10. Baysarov, L.V., Ilyashov, M.A., Levit, V.V., Palamarchuk, T.A., Sergiyenko, V.N., Usachenko, V.B. and Yalanskiy, A.A., M.S. Polyakov Institute of Geotechnical Mechanics under the NAS of Ukraine (2006), Zakonomernost samoorganizatsii gruntovykh i porodnykh massivov vokrug protyazhennykh podzemnykh vyrabotok [The regularity of self-organization of ground and rock massifs around underground workings], International Public Academy of Authors of Scientific Discoveries and Inventions, Moscow, Russia, Discovery № 318, UA.

11. Slashchev, I.N. (2008), “Stability roadway under conditions of elevated of tectonic activity rock massif”, Geo-Technical Mechanics, no. 76, pp. 245-254, UA.

About the authors:

Bulat Anatoly Fedorovich., Academician of the National Academy of Science of Ukraine, Doctor of Technical Sciences (D. Sc), Professor, Director of the Institute, M.S. Polyakov Institute of Geotechnical Mechanics under the National Academy of Science of Ukraine (IGTM, NASU), Dnepropetrovsk, Ukraine, This email address is being protected from spambots. You need JavaScript enabled to view it.

Slashchov Igor Nikolaevich, Candidate of Technical Sciences (Ph.D), Senior Researcher, Senior Researcher in Department of Mineral Mining at Great Depths, M.S. Polyakov Institute of Geotechnical Mechanics under the National Academy of Science of Ukraine (IGTM, NASU), Dnepropetrovsk, Ukraine, This email address is being protected from spambots. You need JavaScript enabled to view it.

Slashchovа Yelena Anatolyevna, Candidate of Technical Sciences (Ph.D), Senior Researcher, Senior Researcher in Department of Mineral Mining at Great Depths, M.S. Polyakov Institute of Geotechnical Mechanics under the National Academy of Science of Ukraine (IGTM, NASU), Dnepropetrovsk, Ukraine, This email address is being protected from spambots. You need JavaScript enabled to view it.

Attachments:
FileDescriptionFile size
Download this file (28.pdf)28.pdfINTERDEPENDENCIES BETWEEN GEOMECHANICAL PROCESSES AND EMISSION OF METHANE AND RADON DECAY PRODUCTS INTO UNDERGROUND WORKINGS OF THE COAL MINES919 kB