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XIX

BIBLIOGRAFIA GENERALE

Bendat, J. S., & Piersol, A. G. (1971). Random data: analysis and measurement procedures. Brennen, C. E. (1995). Cavitation and Bubble Dynamics.

Brennen, C. E. (1994). Hydrodynamics of Pumps.

Cervone, A. (2000). Progetto costruttivo definitivo di un impianto di prova in similitudine di turbopompe cavitanti.

Cervone, A., Torre, L., Bramanti, C., Rapposelli, E., & d'Agostino, L. (2006). Experimental Characterization of Cavitation Instabilities ina Two-Bladed Axial Inducer. AIAA.

Childs, D. (1993). Turbomachinery Rotodynamics.

d'Agostino, L., Torre, L., Pasini, A., & Cervone, A. (February 17-22,2008). A Reduced Order Model for Preliminary Design and Performance Prediction of Tapered Inducers. Honolulu, Hawaii.

d'Agostino, L., Torre, L., Pasini, A., Baccarella, D., Cervone, A., & Milani, A. (2008). A Reduced Order Model for Preliminary Design and Performance Prediction of Tapered Inducers:

Comparison with Numerical Simulations. American Institute of Aeronautics and Astronautics.

del Valle, J., Braisted, D. M., & Brennen, C. (1992). The Effects of Inlet Flow Modification on Cavitating Inducer Performance. ASME J. Turbomachinery.

Enomoto, N., Kim, J., Ishizaka, K., Watanabe, S., & Furukawa, A. (2003). Suppression of Cavitation Surge of a Helical Inducer Occurring in Partial Flow Condition. CAV2003.

Fotino, D. (2006). Analisi della cavitazione in induttori mediante telecamera ad alta velocità. Fujii, A., Azuma, S., Yoshida, Y., & Tsujimoto, Y. (2002). Higher Order Rotating Cavitation in an inducer. Honolulu, USA: ISROMAC.

Furukawa, A., Ishizaka, K., & Watanabe, S. (2001). Experimental Estimate of Helical Inducer Blade Forces in Cavitation Surge Condition. Pasadena, USA: CAV2001.

Gongwer, C. A. (1967). Resilient Valve Member Having A Plurality Of Passages. US Patent N°3,316,936.

Greitzer, E. M. (1981). The Stability of Pumping Systems - The 1980 Freeman Scholar Lecture. ASME.

Hashimoto, T., Yamada, H., Funatsu, S., Ishimoto, J., Kamijo, M., & Tsujimoto, Y. (1997). Rotating Cavitation in Three and Four-Bladed Inducers. Seattle, USA: AIAA.

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XX

Huth, J. (1960). Relativistic Theory of Rocket Flight with Advanced Propulsion Systems. Jakobsen, P. (1971). Liquid Rocket Engine Turbopump Inducers. NASA SP-8052.

Kamjio, K., Shimura, T., & Watanabe, M. (1977). An Experimental Investigation of Cavitating Inducer Instability. ASME.

Leiblein, S. (1965). Experimental Flow in Two Dimensional Cascades. Lencastre, A. (1987). Handbook of Hydraulic Engineering.

Milani, A. (2002). Progetto e realizzazione di un impianto per prove rotodinamiche su turbopompe.

Newland, D. E. (1975). An introduction to Random vibrations and spettral analysis. Pace, G. (2009). Caratterizzazione sperimenatale di induttori cavitanti e del sistema di misura delle forze rotodinamiche.

Raposelli, E., Cervone, A., Testa, R., & d'Agostino, L. (2004). Thermal Effects on Cavitation Instabilities in Helical inducers. AIAA.

Rebattet, C., Wegner, M., Morel, P., & Bonhomme, C. Inducer Design that Avoids Rotating Cavitation.

Rogers, D. J. The Boulder Canyon Project and Hoover Dam: Some of its Impacts on the Engineering Profession.

Ruggeri, R. S., & Moore, R. D. (1969). Method for Prediction of Pump Cavitation Performance for Various Liquids, Liquid Temperature, and Rotative Speeds.

Stahl, H. A., & Stepanoff, A. (1956). Thermodynamics Aspects of Cavitation in Centrifugal Pumps.

Subbaraman, M., & Patton, M. (2006). Suppressing Higher Order Cavitation Phenomena in Axial Inducers. Wageningen, NL: CAV2006.

Sutton, G. P., & Biblarz, O. (2001). Rocket Propulsion elements - 7^Edizione.

Testa, R. (2003). Studio sperimentale delle instabilità fluidodinamiche di cavitazione su un induttore commerciale e sul MK1 della turbopompa LOX di ariane 5.

Torre, L. (2004). Studio sperimentale delle prestazioni e delle instabilità fluidodinamiche di cavitazione su un prototipo dell’induttore della turbopompa LOX del motore VINCI.

Torre, L., Pasini, A., Cervone, A., & d'Agostino, L. (2009). Experimental Performance of a Tapered Axial Inducer: Comparison with Analytical Prediction. AIAA.

Tsujimoto, Y. (2001). Simple Rules for Cavitating Instabilities in Turbomachinery. CAV2001. Tsujimoto, Y., Horiguchi, H., & Qiao, X. (2005). Backflow from Inducer and Its Dynamics. Houston, USA: ASME.

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Tsujimoto, Y., Kamijo, M., & Yoshida, Y. (1993). A Theroretical Analysis of Rotating Cavitation in Inducers. Journal of Fluid Engineering.

Tsujimoto, Y., Yoshida, Y., Maekawa, Y., Watanabe, S., & Hashimoto, T. (1997). Observation of Oscillating Cavitation of an Inducer. ASME.

Yoshida, Y., Kikuta, K., Hasegawa, S., Shimagaki, M., Nakamura, N., & Tokumasu, T. (2005). Thermodynamics Effect on a Cavitating Inducer in Liquid Nitrogen. FEDSM2005.

Yoshida, Y., Okita, K., Shimagaki, M., Sasao, Y., Hasegawa, S., Nakamura, N., et al. (2006). Influence of Thermodynamics Effect on Synchronous Rotating Cavitation. CAV2006. Zoladz, T. (2000). Observation on Rotating Cavitation and Cavitation Surge From the Development of the Fastrac Engine Turbopump. Huntsville, USA: AIAA.

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