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Theoretical Analysis of the Interaction between Two Burning Fuel Droplets : Part 1, Identical Droplet Case

The effects of the interaction between two burning identical fuel droplets are analyzed exactly in the Schvab-Zeldovich formulation. The expression for the evaporation rate of each droplet is obtained in an explicit form, which shows that the interaction reduces the evaporation rate compared with th...

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Published in:Bulletin of JSME 1980, Vol.23(186), pp.2071-2075
Main Authors: UMEMURA, Akira, OGAWA, Satoru, OSHIMA, Nobunori, SHINTANI, Kazuhito
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Language:English
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container_end_page 2075
container_issue 186
container_start_page 2071
container_title Bulletin of JSME
container_volume 23
creator UMEMURA, Akira
OGAWA, Satoru
OSHIMA, Nobunori
SHINTANI, Kazuhito
description The effects of the interaction between two burning identical fuel droplets are analyzed exactly in the Schvab-Zeldovich formulation. The expression for the evaporation rate of each droplet is obtained in an explicit form, which shows that the interaction reduces the evaporation rate compared with that of an isolated droplet. The criterion which divides two possible types of flame surfaces, i, e., two separate flames or one coalescent flame, is derived, which will be of interest in connection with the prediction of the combustion modes in spray.
doi_str_mv 10.1299/jsme1958.23.2071
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title Theoretical Analysis of the Interaction between Two Burning Fuel Droplets : Part 1, Identical Droplet Case
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