Bubble growth in composite water/fuel droplets: Effect on timing of their puffing/micro-explosion

Bibliographic Details
Parent link:Fuel.— .— Amsterdam: Elsevier Science Publishing Company Inc.
Vol. 392.— 2025.— Article number 134696, 11 p.
Other Authors: Chernov A. A. Andrey Aleksandrovich, Antonov D. V. Dmitry Vladimirovich, Pavlenko A. N. Aleksandr Nikolaevich, Bar-Kohany T. Tali, Strizhak P. A. Pavel Alexandrovich, Sazhin S. S. Sergey Stepanovich
Summary:Title screen
The existing models of bubble growth are reviewed with a view to their possible application to the study of puffing/micro-explosion in composite water/fuel droplets. A simplified version of the Chernov et al. model in the limit of Ja≫1 is demonstrated to be the most suitable for this from the point of view of its simplicity and accuracy. This model is applied to the analysis of timing of puffing/micro-explosion in composite water/n-dodecane droplets placed in air at temperatures varying from 500 to 1000 K. The times to puffing/micro-explosion and bubble growth times for these droplets were obtained based on experiments performed at the National Research Tomsk Polytechnic University. The bubble growth times predicted by this model are shown to be reasonably close to the experimental results. Also the values of these times are very close to those predicted by the direct numerical solution of the underlying equations
Текстовый файл
AM_Agreement
Language:English
Published: 2025
Subjects:
Online Access:https://doi.org/10.1016/j.fuel.2025.134696
Format: Electronic Book Chapter
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=679538

MARC

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200 1 |a Bubble growth in composite water/fuel droplets: Effect on timing of their puffing/micro-explosion  |f Andrey A. Chernov, Dmitrii V. Antonov, Aleksandr N. Pavlenko [et al.] 
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330 |a The existing models of bubble growth are reviewed with a view to their possible application to the study of puffing/micro-explosion in composite water/fuel droplets. A simplified version of the Chernov et al. model in the limit of Ja≫1 is demonstrated to be the most suitable for this from the point of view of its simplicity and accuracy. This model is applied to the analysis of timing of puffing/micro-explosion in composite water/n-dodecane droplets placed in air at temperatures varying from 500 to 1000 K. The times to puffing/micro-explosion and bubble growth times for these droplets were obtained based on experiments performed at the National Research Tomsk Polytechnic University. The bubble growth times predicted by this model are shown to be reasonably close to the experimental results. Also the values of these times are very close to those predicted by the direct numerical solution of the underlying equations 
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610 1 |a электронный ресурс 
610 1 |a труды учёных ТПУ 
610 1 |a Bubble growth 
610 1 |a Composite droplets 
610 1 |a Puffing/micro-explosion 
610 1 |a Mathematical model 
610 1 |a Experimental observations 
701 1 |a Chernov  |b A. A.  |g Andrey Aleksandrovich 
701 1 |a Antonov  |b D. V.  |c specialist in the field of heat and power engineering  |c Associate Professor, Research Engineer at Tomsk Polytechnic University, Candidate of Physical and Mathematical Sciences  |f 1996-  |g Dmitry Vladimirovich  |9 22322 
701 1 |a Pavlenko  |b A. N.  |g Aleksandr Nikolaevich 
701 1 |a Bar-Kohany  |b T.  |g Tali 
701 1 |a Strizhak  |b P. A.  |c Specialist in the field of heat power energy  |c Doctor of Physical and Mathematical Sciences (DSc), Professor of Tomsk Polytechnic University (TPU)  |f 1985-  |g Pavel Alexandrovich  |9 15117 
701 1 |a Sazhin  |b S. S.  |c geophysicist  |c Leading researcher at Tomsk Polytechnic University, PhD in Physics and Mathematics  |f 1949-  |g Sergey Stepanovich  |9 88718 
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