30
1 Fundamental Concepts of Fluid Mechanics for Mine Ventilation
References
Blasius, P. H. (1913). Das Aehnlichkeitsgesetz bei Reibungsvorgängen in Flüssigkeiten. VDI Mitt.
Forschungsarb, 131, 39–46.
Colebrook, C. F., & White, C. M. (1937). Experiments with fluid friction in roughened pipes.
Proceedings of the Royal Society of London Series A, 161(904), 367–381.
Coleman, M., Cain, M., Danna, R., Harley, C., & Sharp, D. (1988). A review of energy release
processes from the failure of pneumatic pressure vessels. Eastern Space & Missile Center.
Haaland, S. E. (1983). Simple and explicit formulas for the friction factor in turbulent pipe flow.
Journal of Fluids Engineering, 105(1), 89–90.
Hagen, G. H. L. (1839). Ueber die Bewegung des Wassers in engen cylindrischen Rohren.
Poggendorfs Annalen der Physik und Chemie (2), 46, 423.
Nikuradse, J. (1932). Gesetzmässigkeit der turbulenten Strömung in glatten Rohren. VDI Forschungs
Heft, 356.
Nikuradse, J. (1933). Strömungsgesetze in rauhen Rohren. VDI Forschungs Heft, 361.
Novitzky, A. (1962). Ventilación de minas (p.155). Buenos Aires. Argentina: Yunque.
Poiseuille, J. L. (1840). Recherches experimentales sur le mouvement des liqnides dans les tubes
de tres petits diametres. Compte Rendus, 11, 961.
Prandtl, L. (1935). The mechanics of viscous fluids. Aerodynamic Theory, 3, 155–162.
Smith, R. (1956). Flow of natural gas through experimental pipelines and transmission lines,
Monogram 9, US Bureau of Mines. American Gas Association.
Bibliography
Boon, J. P., Yip, S., Burgers, J. M., Van de Hulst, H. C., Chandrasekhar, S., Chen, F. F., et al. (1988).
An introduction to fluid mechanics. Cambridge, UK: Cambridge University Press.
Elger, D. F., & Roberson, J. A. (2016). Engineering fluid mechanics (pp. 170–185). Hoboken, NJ:
Wiley.
Kreith, F., & Bohn, M. S. (1993). Principles of heat transfer (5th ed.). West Publishing.
Nakayama, Y. (2018). Introduction to fluid mechanics. Butterworth-Heinemann.
Shaughnessy, E. J., Katz, I. M., & Schaffer, J. P. (2005). Introduction to fluid mechanics (Vol. 8).
NY: Oxford University Press.
Smits, A. J. (2000). A physical introduction to fluid mechanics. Wiley.
Young, D. F., Munson, B. R., Okiishi, T. H., Huebsch, W. W. (2010). A brief introduction to fluid
mechanics. Wiley.
Wang, S. K., & Wang, S. K. (2000). Handbook of air conditioning and refrigeration. NY: McGrawHill.
1 Fundamental Concepts of Fluid Mechanics for Mine Ventilation
References
Blasius, P. H. (1913). Das Aehnlichkeitsgesetz bei Reibungsvorgängen in Flüssigkeiten. VDI Mitt.
Forschungsarb, 131, 39–46.
Colebrook, C. F., & White, C. M. (1937). Experiments with fluid friction in roughened pipes.
Proceedings of the Royal Society of London Series A, 161(904), 367–381.
Coleman, M., Cain, M., Danna, R., Harley, C., & Sharp, D. (1988). A review of energy release
processes from the failure of pneumatic pressure vessels. Eastern Space & Missile Center.
Haaland, S. E. (1983). Simple and explicit formulas for the friction factor in turbulent pipe flow.
Journal of Fluids Engineering, 105(1), 89–90.
Hagen, G. H. L. (1839). Ueber die Bewegung des Wassers in engen cylindrischen Rohren.
Poggendorfs Annalen der Physik und Chemie (2), 46, 423.
Nikuradse, J. (1932). Gesetzmässigkeit der turbulenten Strömung in glatten Rohren. VDI Forschungs
Heft, 356.
Nikuradse, J. (1933). Strömungsgesetze in rauhen Rohren. VDI Forschungs Heft, 361.
Novitzky, A. (1962). Ventilación de minas (p.155). Buenos Aires. Argentina: Yunque.
Poiseuille, J. L. (1840). Recherches experimentales sur le mouvement des liqnides dans les tubes
de tres petits diametres. Compte Rendus, 11, 961.
Prandtl, L. (1935). The mechanics of viscous fluids. Aerodynamic Theory, 3, 155–162.
Smith, R. (1956). Flow of natural gas through experimental pipelines and transmission lines,
Monogram 9, US Bureau of Mines. American Gas Association.
Bibliography
Boon, J. P., Yip, S., Burgers, J. M., Van de Hulst, H. C., Chandrasekhar, S., Chen, F. F., et al. (1988).
An introduction to fluid mechanics. Cambridge, UK: Cambridge University Press.
Elger, D. F., & Roberson, J. A. (2016). Engineering fluid mechanics (pp. 170–185). Hoboken, NJ:
Wiley.
Kreith, F., & Bohn, M. S. (1993). Principles of heat transfer (5th ed.). West Publishing.
Nakayama, Y. (2018). Introduction to fluid mechanics. Butterworth-Heinemann.
Shaughnessy, E. J., Katz, I. M., & Schaffer, J. P. (2005). Introduction to fluid mechanics (Vol. 8).
NY: Oxford University Press.
Smits, A. J. (2000). A physical introduction to fluid mechanics. Wiley.
Young, D. F., Munson, B. R., Okiishi, T. H., Huebsch, W. W. (2010). A brief introduction to fluid
mechanics. Wiley.
Wang, S. K., & Wang, S. K. (2000). Handbook of air conditioning and refrigeration. NY: McGrawHill.
