1. [1] Yang, N., Moriya, S., Okajima, J., Nomura, T. and Iga, Y., Visualization of Cavitation Behavior around the Fin in the Heat Exchanger, Sixteenth International Conference on Flow Dynamics (ICFD2019), 776-777 (2019).
2. [2] Ball, C., Meng, P. and Reid, L., Cavitation Performance of 84° Helical Pump Inducer Operated in 37° and 42° R Liquid Hydrogen, NASA, Washington, DC, TM X-1360 (1967).
3. [3] Franc, J, Rebattet, C. and Coulon, A., An Experimental Investigation of Thermal Effects in a Cavitating Inducer, ASME J. Fluids Eng., Vol. 126(5), 716-723 (2004).
4. [4] Ito, Y., Tsunoda, A., Kurishita, Y., Kitano, S. and Nagasaki, T., Experimental Visualization of Cryogenic Backflow Vortex Cavitation With Thermodynamic Effects, J. Propul. Power, Vol. 32(1), 71-82 (2016).
5. [5] Hord, J., Anderson, L. and Hall, W., Cavitation in Liquid Cryogens I - Venturi, NASA, Washington, DC, CR-2054 (1972).