CFD Simulations of Flow in Capillary Flow Liquid Acquisition Device Channel

Future space vehicles will require the use of non-toxic, cryogenic propellants, because of the performance advantages over the toxic hypergolic propellants and also because of the environmental and handling concerns. A prototypical capillary flow liquid acquisition device (LAD) for cryogenic propellants was fabricated with a mesh screen, covering a rectangular flow channel with a cylindrical outlet tube, and was tested with liquid oxygen (LOX). In order to better understand the performance in various gravity environments and orientations with different submersion depths of the LAD, a series of computational fluid dynamics (CFD) simulations of LOX flow through the LAD screen channel, including horizontally and vertically submersions of the LAD channel assembly at normal gravity environment was conducted. Gravity effects on the flow field in LAD channel are inspected and analyzed through comparing the simulations.





References:
[1] Jurns, j.m. And kudlac, m.t.: liquid acquisition devices
evaluated,www.grc.nasa.gov/www/rt/2006/rt/rtp-jurns.html
[2] Fester, d.a., villars, a.j. And uney, p.e.: surface tension propellant
acquisition system technology for space shuttle reaction control tanks, j.
Spacecraft 13, 522-527 (1976).
[3] Kudlac, m.t. And jurns, j.m.: screen channel liquid acquisition devices for
liquid oxygen, 42nd aiaa/asme/sae/asee joint propulsion conference &
exhibit, sacramento, ca (2006), see also paper aiaa 2006-5054.
[4] Dyke, m.v.: identification of influential factors for liquid acquisition
device designs, 34th joint propulsion conference and exhibit, cleveland,
oh (1998), see also paper aiaa-98-3198.
[5] Chato, d.j. And kudlac, m.t.: screen channel liquid acquisition devices for
cryogenic propellants, 38th aiaa/asme/sae/asee joint propulsion
conference & exhibit, indianapolis, in (2002), see also paper aiaa
2002-3983.
[6] Zhang, n., chato, d.j., mcquillen, j.b., motil, b.j. And chao, d.f.: cfd
simulation of pressure drops in liquid acquisition device channel with
sub-cooled oxygen, world academy of science, engineering and
technology, 58, 1180-1185 (2009).
[7] Mcquillen, j.b., chato, d.j., motil, b.j., doherty, m.p., chao, d.f., and
zhang, n.:porous screen applied in liquid acquisition device channel and
cfd simulation of flow in the channel, j. Porous media (in print) (2012).
[8] Armour, j.c. And cannon, j.n.: fluid flow through woven screens, j. Aiche,
14, 415-420 (1968).
[9] Cady, e.c.: study of thermodynamic vent and screen baffle integration for
orbital storage and transfer of liquid hydrogen, nasa-cr-134482 (1973).
[10] Mcquillen, j.b., chato, d.j., hall, n.r., and zhang, n.: velocity vector field
visualization of flow in liquid acquisition device channel, in: proceedings
of international conference on information visualization theory and
applications, 743-748, rome, italy, 24-26, february, 2012, scitepress
digital library.