Simonini A, Dreyer M, Urbano A, Sanfedino F, Himeno T, Behruzi P, Avila M, Pinho L, Peveroni JB (2024) Gouriet Cryogenic propellant management in space: open challenges and perspectives. npj Microgravity, vol. 10, no. 34.
Gray N, McDonagh S, O’Shea R, Smyth B, Murphy JD (2021) Decarbonising ships, planes and trucks: An analysis of suitable low-carbon fuels for the maritime, aviation and haulage sectors. Advances in Applied Energy, vol. 1.
Ustolin F, Campari A, Taccani R (2022) An Extensive Review of Liquid Hydrogen in Transportation with Focus on the Maritime Sector. Journal of Marine Science and Engineering, vol. 10, p. 1222.
Brentari EG, Giarratano PJ, Smith RV (2008) Boiling Heat Transfer for Oxygen, Nitrogen, Hydrogen, and Helium. U.S. Dept. of Commerce: National Bureau of Standards, Boulder, Colorado
McQuillen J, Colin C, Fabre J (1999) Ground-Based Gas-Liquid Flow Research in Microgravity Conditions: State of Knowledge. National Aeronautics and Space Administration
Moran M (2023) Part 1 - Passive Technologies, Systems, and Operations. Cryogenic Fluid Management of Liquid Hydrogen, Oxygen, and Methane, Kent, Ohio: Moran Innovation, LLC
Tensy E, Johnson BP, Hartwig J, Mercado M, Ganesan V, Mudawar I (2024) Validation of Universal Cryogenic Flow Boiling Correlations in Thermal Desktop for Liquid Hydrogen. AIAA ACITECH 2024 Forum
O’Neill LE, Balasubramaniam R, Nahra HK, Hasan MM, Mackey JR, Mudawar I (2019) Identification of condensation flow regime at different orientations using temperature and pressure measurements. International Journal of Heat and Mass Transfer, vol. 135, pp. 569–590
Park I, Lee H, Mudawar I (2015) Determination of flow regimes and heat transfer coefficient for condensation in horizontal tubes. International Journal of Heat and Mass Transfer, vol. 80, pp. 698–716
Bai B, Zhang S, Zhao L, Zhang X, Guo L (2008) Online Recognition of the Multiphase Flow Regime. Science in China Series E: Technological Sciences, vol. 51, no. 8, pp. 1186–1194
Guo X, Dai Z, Gong X, Yu Z (2007) Application of a Capcitance Solid Mass Flow meter in a Dense Phase Pneumatic Conveying System of Pulverized Coal. AIP Conference Proceedings, vol. 914, pp. 320–327
Li J, Kong M, Xu C, Wang S, Fan Y (2015) An Integrated Instrumentation System for Velocity, Concentration and Mass Flow Rate Measurement of Solid Particles Based on Electrostatic and Capacitance Sensors. Sensors, pp. 31023–31035
Hunt A (2014) Weighing without Touching: Applying Electrical Capacitance Tomography to Mass Flowrate Measurement in Multiphase Flows. Measurement and Control, vol. 47, no. 1, pp. 19–25
Qussai M, Straiton B, Snyder P (2024) Advanced Multi-Dimensional capacitance Sensors Based Subsea Multiphase Mass Flow Meter to Measure and Monitor Offshore Enchanced Oil. OSTI
Straiton B, Marashdeh Q, Charleston M (2023) Capacitance Based Measurement of Volume Fraction, Velocity, and Mass Flow Rate of Cryogenic Nitrogen 2-Phase Flow. Honolulu, HI: Presented at 2023 Cryogenic Engineering Conference and International Cryogenic Materials Conference
Caniere H, Bauwens B, T’Joen C, De Paepe M (2010) Mapping of horizontal refrigerant two-phase flow patterns based on clustering of capcitance sensor signals. International Journal of Heat and Mass Transfer, no. 53, pp. 5298–5307
Chen J, Wang Y, Zhang W, Qiu L, Zhang X (2017) Capacitance-based liquid holdup measurement of a cryogenic two-phase flow in a nearly-horizontal tube. Cryogenics, no. 84, pp. 69–75
Hewitt GF (1982) Flow Regimes, in Handbook of Multiphase Systems, G. Hetsroni, Ed., Hemisphere Publishing Company, McGraw Hill Book Company, pp. 2-3 to 2-43
Ghajar AJ, Bhagwat SM (2017) Gas-Liquid Flow in Ducts, in Multiphase Flow Handbook. Second Edition, E. E. Michaelides, C. T. Crowe and J. D. Schwarzkopf, Eds., Boca Raton, FL, CRC Press, pp. 287–356