Babbit, H. E. y Caldwell, D. H. (1939). Laminar flow of sludge in pipes with special reference to sewage sludge University of Illinois Engineering Experiment Station Bulletin, N° 319.
Carmona, R. y Sánchez, A. (1996). Incremento de pérdida de carga en acueductos: información de campo de dos acueductos, IAHR, XVII Congreso Latinoamericano de Hidráulica, vol. 5, pp. 267-278.
Carthew, G. A., Goehring, C. A. y Van Teylingen, J. E. (1983). Development of dynamic head loss criteria of raw sludge pumping, Journal of Water Pollution Control Federation, vol. 55, Nº 5.
[+]
Babbit, H. E. y Caldwell, D. H. (1939). Laminar flow of sludge in pipes with special reference to sewage sludge University of Illinois Engineering Experiment Station Bulletin, N° 319.
Carmona, R. y Sánchez, A. (1996). Incremento de pérdida de carga en acueductos: información de campo de dos acueductos, IAHR, XVII Congreso Latinoamericano de Hidráulica, vol. 5, pp. 267-278.
Carthew, G. A., Goehring, C. A. y Van Teylingen, J. E. (1983). Development of dynamic head loss criteria of raw sludge pumping, Journal of Water Pollution Control Federation, vol. 55, Nº 5.
Kaftori, D., Hetsron, G. y Banerjee, S. (1998). The effect of particles on wall turbulence, International Journal of Multiphase Flow, vol. 24, N°3, pp. 359-386.
Levi, E. (1989). El agua según la ciencia, Ediciones Castell-Consejo Nacional de Ciencia y Tecnología, México.
Metcalf, L. y Eddy, H. P. (1991). Wastewater engineering, treatment disposal and reuse, McGraw Hill, Inc, Singapur, 3th Ed.
Mulbarguer, M. C., Copas, S. R., Kordic, J. R. y Cash, F. M. (1991). Pipe friction losses for wastewater sludges, Journal of Water Pollution Control Federation, Vol. 51, Nº 8, pp.1303-1313.
Ortiz, L. A. y Sánchez, A. (1998). Determinación de los coeficientes globales de pérdidas de energía en el Sistema Cutzamala, IAHR, XVIII Congreso Latinoamericano de Hidráulica, vol. 2, pp. 687-696.
Sanks, R., Tchobanoglous, G., Newton, D., Bosserman, B. E.y Jones, G. M. (eds). (1998). Pumping station design, Butterworths, Stonehmam, USA.
Turian, R. M., Ma, T. W., Hsu, F. L. y Sung, D. J. (1998) Flow of concentrated non-newtonian slurries: 1. Friction losses in laminar, turbulent and transition flow through straight pipe, International Journal of Multiphase Flow, vol. 24, N° 2, pp. 225-242.
Turian, R. M., Ma, T. W., Hsu, F. L. y Sung, D. J. (1998). Flow of concentrated non-newtonian slurries: 2. Friction losses in bends, fittings, valves and Venturi meters, International Journal of Multiphase Flow, vol. 24, N° 2, pp. 243-269.
Wilson, K. y Addie, G. (1997). Coarse-particle pipeline transport: effect of particle degradation on friction, Powder Technology, vol. 94, N° 3, pp. 235-238.
Zandi, I. (1971). Advances in solid-liquid flow in pipes and its application, 1st Ed., Pergamon press ltd., Headinton Hill Hall, Oxford.
[-]