1 R biger, K., Leistritz, A.G., Maksoud, T.M.A., Ward, J., Hausmann, G., “Investigation of the fluid dynamic and thermodynamic behaviour of multiphase screw pumps handling liquid/gas mixtures with very high gas volume fractions”, In: 13th International Conference on Multiphase Production Technology′07, Edinburgh, UK (2007). 2 Tremante, A., Moreno, N., Rey, R., Noguera, R., “Numerical turbulent simulation of the two-phase flow (liquid/gas) through a cascade of an axial pump”, J. Fluids Eng., 124 (2), 371-376 (2002). 3 Dogru, A.H., Hamoud, A.A., Barlow, S.G., “Multiphase pump recovers more oil in a mature carbonate reservoir”, J. Petrol. Technol.,56 (2), 64-67 (2004). 4 Hatakeyama, N., Takahashi, H., Saito, T., Masuyama, T., “A numerical simulation of unsteady flow in an air-lift pump for lifting deep-sea mineral resources”, J. Mining Materials Process. Inst. Japan, 115 (13), 958-964 (1999). (in Japanese) 5 Leporcher, E., Delaytermoz, A., Renault, J.F., Gerbier, A., “Deployment of multiphase pumps on a north sea field”, In: 2001 SPE Annual Technical Conference and Exhibition, New Orleans, SPE 71536, Louisiana (2001). 6 Poullikkas, A., “Compressibility and condensation effects when pumping gas-liquid mixtures”, J. Fluid Dyn. Res., 25, 57-62 (1999). 7 Balasubramaniam, R., Ramé, E., Kizito, J., Kassemi, M., “Two phase flow modeling: Summary of flow regimes and pressure drop correlations in reduced and partial gravity”, NASA CR-2006-214085, Cleveland, Ohio (2006). 8 Minemura, K., Uchiyama, T., Shoda, S., Egashira, K., “Prediction of air-water two-phase flow performance of a centrifugal pump based on one-dimensional two-fluid model”, J. Fluids Eng., 120 (2),327-334 (1998). 9 Li, Q.P., Xue, D.S., Li, Z.F., Zhu, H.W., Ban, Y.T., “Optimize of the helico-axial multiphase pump prototype and its experimental studies on performances”, Journal of Engineering Thermophysics, 25 (6),962-964 (2004). (in Chinese) 10 Hu, S.B., Chai, L.P., He, Y.J., Shi, H.X., Cheng, D.W., Yang, Y.J., Zhang, M.L., “Experimental research on the centrifugal pump transferring gas-liquid two phases flow”, Fluid Machinery, 30 (2), 4-6 (2002). (in Chinese) 11 Qian, H.J., Wei, Z.B., “Study of air’s effect on the performance of centrifugal pump”, Fluid Machinery, 31 (7), 1-4 (2003). (in Chinese) 12 Zhu, Z.C., “Design method of super-low-specific-speed high-speed centrifugal pumps with complex impeller”, Ph.D. Thesis, Zhejiang University, Hangzhou (1997). (in Chinese) 13 Zhu, Z.C., “Theoretical design and engineering implementation of super-low-specific-speed high-speed centrifugal pumps”, Journal of Mechanical Engineering, 36 (4), 30-33 (2000). (in Chinese) 14 Zhu, Z.C., Chen, Y., Jin, Q.M., Huang, D.H., “Study on high-speed centrifugal-regenerative pump with an inducer”, Chin. J. Chem. Eng.,10 (2), 137-141 (2002). 15 Shenyang Pump Technology Institute, Design Manual of Blade Pump, China Machine Press, Beijing (1983). (in Chinese) 16 Jin, Y.J., Xie, P., Hu, X.D., “The head analysis on gas-liquid two-phase mixture flow of small-flow high-head centrifugal-vortex pump”, Journal of Zhejiang Sci-Tech University, 24 (4), 420-423 (2007). (in Chinese) 17 Cui, B.L., Zhu, Z.C., Zhang, J.C., Chen, Y., “The flow simulation and experimental study of low-specific-speed high-speed complex centrifugal impellers”, Chin. J. Chem. Eng., 14 (4), 435-441 (2006). 18 Bernd, B., Bernhard, B., Bernd, S., “Experimental investigations concerning influences on cavitation inception at an axial test pump”, In: Proceedings of 4th ASME/JSME Joint Fluids Engineering Conference, FEDSM’03, Honolulu, Hawaii, USA, 1-8 (2003). |