References
- Moon, Y., Nam, C.H., Chung, Y.H. and Jeong, E., "Introduction to Test Program for Development of KSLV-II Liquid Rocket Engine," 2015 KSPE Fall Conference, Gyeongju, Korea, pp. 727-731, Nov. 2015.
- Nam, C.H., Moon, Y. and Seol, W.S., "Definition of Engine Component Performance Test Range of 75tf Class Gas Generator Cycle Liquid Propellant Rocket Engine," Journal of the Korean Society of Propulsion Engineers, Vol. 15, No. 6, pp. 91-97, 2011.
- Kim, D.J., Kang, B.Y., Choi, C.H. and Bae, J.H., "High Frequency Signal Analysis of LOx Pump for Liquid Rocket Engine under Cavitating Condition," Journal of the Korean Society of Propulsion Engineers, Vol. 22, No. 4, pp. 61-67, 2018. https://doi.org/10.6108/KSPE.2018.22.4.061
- Kim, D.J., Kang, B.Y. and Choi, C.H., "High Frequency Signal Analysis of Fuel Pump for Liquid Rocket Engine under Cavitating Condition," 2017 KSPE Spring Conference, Jeju, Korea, pp. 727-731, May 2017.
- Kim, D.J., Choi, C.H. and Kim, J.S., "Cavitation Instability of Turbopump Assembly Test for Korean Space Launch Vehicle," The Society for Aerospace System Engineering 2018 Fall Conference, Gyeongju, Korea, Nov. 2018.
- Kim, D.J., Sung, H., Choi, C.H. and Kim, J.S., "Cavitation Instabilities During the Development Testing of a Liquid Oxygen Pump," AIAA Journal of Propulsion and Power, Vol. 33, No. 1, pp. 187-192, 2017. https://doi.org/10.2514/1.B35988
- Kim, D.J., Sung, H., Choi, C.H. and Kim, J.S., "Cavitation Instabilities of an Inducer in a Cryogenic Pump," Acta Astronautica, Vol. 132, pp. 19-24, 2017. https://doi.org/10.1016/j.actaastro.2016.12.007
- Ryan, R.S. and Gross, L.A., "The Space Shuttle Main Engine liquid Oxygen Pump High-Synchronous Vibration Issue, The Problem, The Resolution Approach, The Solution," 30th Joint Propulsion Conference, Indianapolis, I.N., U.S.A., AIAA-94-3153, June 1994.
- Tsujimoto, Y. and Semenov, Y.A., "New Types of Cavitation Instabilities in Inducers," Space Launcher Liquid Propulsion: 4th International Conference on Space Launcher Technology, Liege, Belgium, 2002.
- Tsujimoto, Y., Yoshida, Y., Maekawa, Y., Watanabe, S. and Hashimoto, T., "Observations of Oscillating Cavitation of an Inducer," ASME Journal of Fluids Engineering, Vol. 119, No. 4, pp. 775-781, 1997. https://doi.org/10.1115/1.2819497
- Yoshida, Y., Nanri, H., Kikuta, K., Kazami, Y., Iga, Y. and Ikohagi, T., "Thermodynamic Effect on Subsynchronous Rotating Cavitation and Surge Mode Oscillation in a Space Inducer," ASME Journal of Fluids Engineering, Vol. 133, No. 6, p. 061301, 2011. https://doi.org/10.1115/1.4004022
- Kang, D.H., "A Cause and Suppression Methods of Cavitation Instabilities in an Inducer for Rocket Engines," Ph.D Dissertation, Department of Mechanical Science and Bioengineering, Osaka University, Suita, Osaka, Japan, 2010.
- Fujii, A., Azuma, S., Yoshida, Y., Tsujimoto, Y. and Horiguchi, H., "Higher Order Rotating Cavitation in an Inducer," International Journal of Rotating Machinery, Vol. 10, No. 4, pp. 241-251, 2004. https://doi.org/10.1155/S1023621X04000260
- Kim, D.J., Choi, C.H. and Kim, J., "Cavitation Instabilities of LOX Pump for KSLV-II," 2016 Summer Conference of Korean Society for Fluid Machinery, Busan, Korea, July 2016.
- Kim, D.J., Choi, C.H. and Kim, J., "Cavitation Instabilities of Fuel Pump for KSLV-II," 2016 Summer Conference of Korean Society for Fluid Machinery, Busan, Korea, July 2016.
- Yoshida, Y., Eguchi, M., Motomura, T., Uchiumi, M., Kure, H., and Maruta, Y., "Rotordynamic Forces Acting on ThreeBladed Inducer Under Supersynchronous/Synchronous Rotating Cavitation," ASME Journal of Fluids Engineering, Vol. 132, No. 6, p. 061105, 2010. https://doi.org/10.1115/1.3425727