Publication: Evaluación de la sumergencia mínima requerida para conducciones de agua a presión. Sistemas de almacenamiento - Tubería de conducción
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Ahmadi, H., & Razavi, E. (2018). Determination of Submergence Depth to Avoid Vortices at Horizontal Intake Applying Flow-3D Software. Journal of Civil Engineering Research & Technology, 62-69.
Anwar, H. O., Weller, J., & Amphlett, M. (1978). Similarity Of Free-Vortex At Horizontal Intake. Journal of Hydraulic Research, Vol. 4(No. 1), 12.
Daggett, L. L., & Keulegan, G. H. (January de 1974). SIMILITUDE CONDITIONS IN FREE-SURFACE VORTEX FORMATIONS. (H. L. (U.S.), Ed.) 30.
Durgin, W. W., & Hecker, G. E. (1978). The Modeling of Vortices in Intake. Proc IAHR-ASME-ASCE Joint Symposium on Design and Operation of Fluid Machinery, CSU Fort Collins, vols I and III, págs. 381-391.
FLYGT. (2002). El Concepto de La Bomba Sumergible FLYGT.
Fuertes , V. S., Izquierdo, J., Iglesias, P., Cabrera, E., & García-Serra, J. (15 de Septiembre de 1997). LLENADO DE TUBERÍAS CON AIRE ATRAPADO. Ingeniería del Agua, 4(3), 55-63.
Gavilán Moreno, C. L. (Agosto de 2014). Determining Critical Submergence in Tanks by Means of Reynolds & Weber Numbers. World Journal of Engineering and Technology, Vol.2(No.3), 222-233.
Gordon, J. L. (Abril de 1970). Vortices at intake structures. (W. Power, Ed.) 137-138. Jain, A., Garde, R., & Ranga Raju, K. (1978). Vortex Formation at Vertical Pipe Intakes. Journal of the Hydraulics Division, Vol. 104(No. 10).
Johansson, A., Padmanabhan, M., Cain, S., & Meyer, B. (2009). Hydraulic Modeling of Air-Entraining Vortex Formation During Flow Withdrawal from Water Storage Tanks. In International Conference on Nuclear Engineering.
Knauss, J. (1987). SWIRLING FIDW PROBLEMS AT INTAKES (Primera ed.). Rotterdam
Kyereh D, M., Gyamf, S., Amo-Boateng, M., Andoh, R., Antwi O, E., & Tabor, G. (Julio de 2020). Free surface vortices at hydropower intakes. Scientific African, Vol 8.
Naderi, V., Farsadizadeh, D., Zadeh D, A. H., & Arvanaghi, H. (2014). Discharge Coefficient in Vertical Intakes with Additional Plates. JOURNAL OF HYDRAULIC STRUCTURES, 23-32.
Paterson, I., & Noble, R. (1982). The right approach proceedings of the IAHR, Symposium on Operating Problems of Pump Stations and Power Plants. Amsterdam.
PROSSER, M. J. (1977). The hydraulic design of pump sump and intakes. London.
Reddy, Y. R., & Pickford, J. A. (1972). Vortices at Intakes in Conventional Sumps. (W. Power, Ed.) 108-109.
Rincón, A., & Kuroiwa, J. (5 de Julio de 2023). Influencia de la geometría de entrada en tomas sumergidas sobre la sumersión crítica para la formación de vórtices que arrastran aire. (T. &. Francis, Ed.) Iberoamericana del Agua, Vol 10. (No. 1, 1-17), 1-17.
Rindels, A., & Gulliver, J. (1983). AN EXPERIMENTAL STUDY OF CRITICAL SUBMERGENCE TO AVOID FREE-SURFACE VORTICES AT VERTICAL
INTAKES. University of Minnesota St. Anthony Falls Hydraulic Laboratory, Minneapolis, Minnesota.
Werth, D., & Frizzell, C. (2009). Minimum pump submergence to prevent surface vortex formation. Journal of Hydraulic Research, Vol 47(No 1), 142-144.
Yildirim, N., & Jain, S. (1981). Surface tension effect on profile of a free vortex. ASCE, Journal of Hydraulic Division, Vol.107 (HY1) .
Zielinski, P., & Villemonte, J. (1968). Effect of viscosity on vortex orifice flow. ASCE, Journal of Hydraulic Division, Vol.94 (HY).