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Mass transport phenomena between bubbles and dissolved gases in liquids under reduced gravity conditionsThis paper will describe the experimental and analytical work that has been done to establish justification and feasibility for a Shuttle mid-deck experiment involving mass transfer between a gas bubble and a liquid. The experiment involves the observation and measurement of the dissolution of an isolated, immobile gas bubble of specified size and composition in a thermostatted solvent liquid of known concentration in the reduced gravity environment of earth orbit. Methods to generate and deploy the bubble have been successful both in normal gravity using mutually buoyant fluids and under reduced gravity conditions in the NASA Lear Jet. Initialization of the experiment with a bubble of a prescribed size and composition in a liquid of known concentration has been accomplished using the concept of unstable equilibrium. Subsequent bubble dissolution or growth is obtained by a step increase or decrease in the liquid pressure. A numerical model has been developed which simulates the bubble dynamics and can be used to determine molecular parameters by comparison with the experimental data. The primary objective of the experiment is the elimination of convective effects that occur in normal gravity. The results will yield information on transport under conditions of pure diffusion.
Document ID
19880040492
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Dewitt, Kenneth J.
(Toledo, University OH, United States)
Brockwell, Jonathan L.
(Union Carbide Corp. South Charleston, WV, United States)
Yung, Chain-Nan
(Toledo Univ. OH, United States)
Chai, An-Ti
(Toledo Univ. OH, United States)
Mcquillen, John B.
(Toledo Univ. OH, United States)
Sotos, Raymond G.
(Toledo Univ. OH, United States)
Neumann, Eric S.
(NASA Lewis Research Center Cleveland, OH, United States)
Date Acquired
August 13, 2013
Publication Date
January 1, 1988
Subject Category
Fluid Mechanics And Heat Transfer
Report/Patent Number
AIAA PAPER 88-0450
Accession Number
88A27719
Distribution Limits
Public
Copyright
Other

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