Methane Emission Outbursts in the Mine Face of Two Galleries: Computational Fluid Dynamics Analysis and On-Site Calibration

Author:

Torno Susana1ORCID,Toraño Javier1

Affiliation:

1. Mining and Civil Works Research Group, School of Mines, Oviedo University, 33003 Oviedo, Spain

Abstract

Numerous cases of serious accidents related to methane outbursts exist worldwide. Due to their disastrous consequences, a vast quantity of research on underground gas explosions has been conducted using conventional models and laboratory tests, as performing studies at explosion sites is difficult. When conventional models are employed, the results are poor since these models are based on calculations at fixed times for a single point of a single section of an underground space. Computational fluid dynamics (CFD) analysis is necessary to calibrate these models, using measurements obtained in galleries. In this case, the measurements are obtained from methane emissions of 3885 m3. CFD modelling was carried out in three phases. First, the relationship between methane emission and the main ventilation was analysed. Second, the effect of adding an auxiliary ventilation fan to the main ventilation was investigated. Finally, methane evolution over time was analysed. In the first moments, methane produces a reversal at 200 m from the main ventilation entrance of the gallery. When 60 m of auxiliary ventilation is superimposed, the ventilation reversal distance is reduced to 42 m from the methane emission source. The effect of superimposing appropriate auxiliary ventilation on the main ventilation, as well as the correct placement of the auxiliary ventilation fan, can generate safe zones behind the ventilation reversal area. These CFD models are powerful tools for analysing methane explosion emission and propagation.

Funder

Hullera Vasco Leonesa S.A. Company

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction

Reference29 articles.

1. Investigation into coal gas outburst occurred in Daping Coalmine by using theories of gas-geology;Zhang;J. China Coal Soc.,2005

2. Liu, M.J., Mitri, H.S., and Wei, J.P. (2008, January 29–31). Recent trends of coal and gas outburst accidents in China. Proceedings of the 27th International Conference on Ground Control in Mining, Morgantown, WV, USA.

3. Mine Safety and Health Administration (MSHA) (2010). Report of Investigation: Fatal Underground Mine Explosion April 5, 2010.

4. (2015, March 04). Russia’s Emergencies Minister. Available online: https://www.industriall-union.org/9-miners-dead-and-23-missing-after-explosion-in-ukrainian-coal-mine.

5. A review on effects of different factors on gas explosions in underground structures;Xu;Undergr. Sp.,2020

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