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Group evaporationLiquid fuel combustion process is greatly affected by the rate of droplet evaporation. The heat and mass exchanges between gas and liquid couple the dynamics of both phases in all aspects: mass, momentum, and energy. Correct prediction of the evaporation rate is therefore a key issue in engineering design of liquid combustion devices. Current analytical tools for characterizing the behavior of these devices are based on results from a single isolated droplet. Numerous experimental studies have challenged the applicability of these results in a dense spray. To account for the droplets' interaction in a dense spray, a number of theories have been developed in the past decade. Herein, two tasks are examined. One was to study how to implement the existing theoretical results, and the other was to explore the possibility of experimental verifications. The current theoretical results of group evaporation are given for a monodispersed cluster subject to adiabatic conditions. The time evolution of the fluid mechanic and thermodynamic behavior in this cluster is derived. The results given are not in the form of a subscale model for CFD codes.
Document ID
19920006673
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Shen, Hayley H.
(Clarkson Univ. Potsdam, NY, United States)
Date Acquired
September 6, 2013
Publication Date
October 1, 1991
Publication Information
Publication: Alabama Univ., Research Reports: 1991 NASA(ASEE Summer Faculty Fellowship Program
Subject Category
Inorganic And Physical Chemistry
Accession Number
92N15891
Funding Number(s)
CONTRACT_GRANT: NGT-01-008-021
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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