Mixing and Transient Interface Condensation of a Liquid Hydrogen Tank

Mixing and Transient Interface Condensation of a Liquid Hydrogen Tank
Author :
Publisher : Independently Published
Total Pages : 38
Release :
ISBN-10 : 1792862180
ISBN-13 : 9781792862182
Rating : 4/5 (80 Downloads)

Book Synopsis Mixing and Transient Interface Condensation of a Liquid Hydrogen Tank by : National Aeronautics and Space Adm Nasa

Download or read book Mixing and Transient Interface Condensation of a Liquid Hydrogen Tank written by National Aeronautics and Space Adm Nasa and published by Independently Published. This book was released on 2018-12-31 with total page 38 pages. Available in PDF, EPUB and Kindle. Book excerpt: Experiments were conducted to investigate the effect of axial jet-induced mixing on the pressure reduction of a thermally stratified liquid hydrogen tank. The tank was nearly cylindrical, having a volume of about 0.144 cu m with 0.559 m in diameter and 0.711 m long. A mixer/pump unit, which had a jet nozzle outlet of 0.0221 m in diameter was located 0.178 m from the tank bottom and was installed inside the tank to generate the axial jet mixing and tank fluid circulation. The liquid fill and jet flow rate ranged from 42 to 85 percent (by volume) and 0.409 to 2.43 cu m/hr, respectively. Mixing tests began with the tank pressure ranging from 187.5 to 238.5 kPa at which the thermal stratification results in 4.9 to 6.2 K liquid sub cooling. The mixing time and transient vapor condensation rate at the liquid-vapor interface are determined. Two mixing time correlations, based on the thermal equilibrium and pressure equilibrium, are developed. Both mixing time correlations are expressed as functions of system and buoyancy parameters and compared well with other experimental data. The steady state condensation rate correlation of Sonin et al. based on steam-water data is modified and expressed as a function of jet subcooling. The limited liquid hydrogen data of the present study shows that the modified steady state condensation rate correlation may be used to predict the transient condensation rate in a mixing process if the instantaneous values of jet sub cooling and turbulence intensity at the interface are employed. Lin, C. S. and Hasan, M. M. and Nyland, T. W. Glenn Research Center NASA-TM-106201, E-7910, NAS 1.15:106201, AIAA PAPER 93-1968 RTOP 506-42-73...


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