282
7 The Role of Ventilation in Fires and Explosions
McPherson, M. J. (1993). Subsurface fires and explosions. In Subsurface ventilation and
environmental engineering. Chapman & Hall.
Mucho, T. P., Houlison, I. R., Smith, A. C., & Trevits, M. A. (2005). Coal mine inertisation by
remote application. Proceedings of the 2005 US National Coal Show, pp 7–9.
Ray, S. K., & Singh, R. P. (2007). Recent developments and practices to control fire in undergound
coal mines. Fire Technology, 43(4), 285–300.
Schmidt, W., Grumbrecht, K., Bohm, H. J., & Blumel, H. (1973). On the mutual effect of open
mine fires and ventilation design. Gluckauf Forschungsheft, 34(6), 213–220.
Simode, E. (1976). Stabilisation de l´aérage en cas d´incendie dans les travaux du fond: Théorie de
Budryk. En: Aérage. Document SIM N3. Industrie Minérale. Mine, pp. 2–76.
Soundararajan, R., Amyotte, P. R., & Pegg, M. J. (1996). Explosibility hazard of iron sulphide dusts
as a function of particle size. Journal of Hazardous Materials, 51(1–3), 225–239.
Stracher, G. B., & Taylor, T. P. (2004). Coal fires burning out of control around the world: thermodynamic recipe for environmental catastrophe. International Journal of Coal Geology, 59(1–2),
7–17.
Surkov, A. L. (1975). Determination of heat depression. In Problems of safety in coal mines. US
Department of Interior.
Thomas, P. H. (1970). Movement of smoke in horizontal corridors against an air flow. The Institution
of Fire Engineers Quarterly, 30(77), 45–53.
Trutwin, W. (1972). Estimation of the natural ventilating pressure caused by fire. In International
journal of rock mechanics and mining sciences & geomechanics abstracts (vol. 9, no. 1, pp. 25–
36). Pergamon.
Weiss, E. S., Cashdollar, K. L., Sapko, M. J., & Bazala, E. M. (1995). Secondary explosion hazards
during blasting in oil shale and sulfide ore mines.
Zabetakis, M. G. (1965). Flammability characteristics of combustible gases and vapors (No. BULL627). Washington DC: Bureau of Mines.
Zabetakis, M. G., Stahl, R. W., & Watson, H. A. (1959). Determining the explosibility of mine
atmospheres. BuMines IC 790.
Zhang, J., Wagner, W., Prakash, A., Mehl, H., & Voigt, S. (2004a). Detecting coal fires using remote
sensing techniques. International Journal of Remote Sensing, 25(16), 3193–3220.
Zhou, F., & Wang, D. (2005). Backdraft in descensionally ventilated mine fire. Journal of Fire
Sciences, 23(3), 261–271.
Bibliography
Dougherty, J. J. (1969). Control of mine fires. Mining Extension Service, School of Mines,
Appalachian Center, West Virginia University.
Francart, W. J., & Beiter, D. A. (1997). Barometric pressure influence in mine fire sealing. In
Proceedings of 6th international mine ventilation congress, Pittsburgh, PA, May (pp. 17–22).
Froger, C., Jeger, C., & Pregermain, S. (1976). Feux de mine. In Aérage. Document SIM N3.
Industrie Minérale. Mine 2–76.
Gillies, A. D. S., Wala, A. M., & Wu, H. W. (2004). Case studies from application of numerical
simulation software to examining the effects of fires on mine ventilation systems. In Proceedings
of the 10th US mine ventilation symposium, pp. 445–455.
Graham, J. I. (1914). Adsorption of oxygen by coal. Transactions of the Institution of Mining
Engineers, XLVIII, 521.
Graham, J. I. (1917–1918). The origin of blackdamp. Transactions of the Institution of Mining
Engineers, LV, pp. 294–312.
Jones, J. E., & Trickett J. C. (1954–1955). Some observations on the examination of gases resulting
from explosions in colleries. Transactions of the Institution of Mining Engineers, 114, 768–790.
7 The Role of Ventilation in Fires and Explosions
McPherson, M. J. (1993). Subsurface fires and explosions. In Subsurface ventilation and
environmental engineering. Chapman & Hall.
Mucho, T. P., Houlison, I. R., Smith, A. C., & Trevits, M. A. (2005). Coal mine inertisation by
remote application. Proceedings of the 2005 US National Coal Show, pp 7–9.
Ray, S. K., & Singh, R. P. (2007). Recent developments and practices to control fire in undergound
coal mines. Fire Technology, 43(4), 285–300.
Schmidt, W., Grumbrecht, K., Bohm, H. J., & Blumel, H. (1973). On the mutual effect of open
mine fires and ventilation design. Gluckauf Forschungsheft, 34(6), 213–220.
Simode, E. (1976). Stabilisation de l´aérage en cas d´incendie dans les travaux du fond: Théorie de
Budryk. En: Aérage. Document SIM N3. Industrie Minérale. Mine, pp. 2–76.
Soundararajan, R., Amyotte, P. R., & Pegg, M. J. (1996). Explosibility hazard of iron sulphide dusts
as a function of particle size. Journal of Hazardous Materials, 51(1–3), 225–239.
Stracher, G. B., & Taylor, T. P. (2004). Coal fires burning out of control around the world: thermodynamic recipe for environmental catastrophe. International Journal of Coal Geology, 59(1–2),
7–17.
Surkov, A. L. (1975). Determination of heat depression. In Problems of safety in coal mines. US
Department of Interior.
Thomas, P. H. (1970). Movement of smoke in horizontal corridors against an air flow. The Institution
of Fire Engineers Quarterly, 30(77), 45–53.
Trutwin, W. (1972). Estimation of the natural ventilating pressure caused by fire. In International
journal of rock mechanics and mining sciences & geomechanics abstracts (vol. 9, no. 1, pp. 25–
36). Pergamon.
Weiss, E. S., Cashdollar, K. L., Sapko, M. J., & Bazala, E. M. (1995). Secondary explosion hazards
during blasting in oil shale and sulfide ore mines.
Zabetakis, M. G. (1965). Flammability characteristics of combustible gases and vapors (No. BULL627). Washington DC: Bureau of Mines.
Zabetakis, M. G., Stahl, R. W., & Watson, H. A. (1959). Determining the explosibility of mine
atmospheres. BuMines IC 790.
Zhang, J., Wagner, W., Prakash, A., Mehl, H., & Voigt, S. (2004a). Detecting coal fires using remote
sensing techniques. International Journal of Remote Sensing, 25(16), 3193–3220.
Zhou, F., & Wang, D. (2005). Backdraft in descensionally ventilated mine fire. Journal of Fire
Sciences, 23(3), 261–271.
Bibliography
Dougherty, J. J. (1969). Control of mine fires. Mining Extension Service, School of Mines,
Appalachian Center, West Virginia University.
Francart, W. J., & Beiter, D. A. (1997). Barometric pressure influence in mine fire sealing. In
Proceedings of 6th international mine ventilation congress, Pittsburgh, PA, May (pp. 17–22).
Froger, C., Jeger, C., & Pregermain, S. (1976). Feux de mine. In Aérage. Document SIM N3.
Industrie Minérale. Mine 2–76.
Gillies, A. D. S., Wala, A. M., & Wu, H. W. (2004). Case studies from application of numerical
simulation software to examining the effects of fires on mine ventilation systems. In Proceedings
of the 10th US mine ventilation symposium, pp. 445–455.
Graham, J. I. (1914). Adsorption of oxygen by coal. Transactions of the Institution of Mining
Engineers, XLVIII, 521.
Graham, J. I. (1917–1918). The origin of blackdamp. Transactions of the Institution of Mining
Engineers, LV, pp. 294–312.
Jones, J. E., & Trickett J. C. (1954–1955). Some observations on the examination of gases resulting
from explosions in colleries. Transactions of the Institution of Mining Engineers, 114, 768–790.
