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An extended classical solution of the droplet growth problemProblems of applying the classical kinetic theory to the growth of small droplets from vapor are examined. A solution for the droplet growth equation is derived which is based on the assumption of a diffusive field extending to the drop surface. The method accounts for partial thermal and mass accommodation at the interface and the kinetic limit to the mass and heat fluxes, and it avoids introducing the artifact of a discontinuity in the thermal and vapor field near the droplet. Consideration of the environmental fields in spherical geometry utilizing directional fluxes yields boundary values in terms of known parameters and a new Laplace transform integral.
Document ID
19810008863
Acquisition Source
Legacy CDMS
Document Type
Technical Memorandum (TM)
Authors
Anderson, B. J.
(NASA Marshall Space Flight Center Huntsville, AL, United States)
Hallett, J.
(Desert Research Inst. Reno Reno, United States)
Beesley, M.
(Nevada Univ. System)
Date Acquired
September 4, 2013
Publication Date
January 1, 1981
Subject Category
Fluid Mechanics And Heat Transfer
Report/Patent Number
NASA-TM-82392
Report Number: NASA-TM-82392
Accession Number
81N17383
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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