Study of the Weber number impact on secondary breakup of droplets of coal water slurries containing petrochemicals

Bibliographic Details
Parent link:Fuel
Vol. 254.— 2019.— [115606, 14 р.]
Corporate Author: Национальный исследовательский Томский политехнический университет Исследовательская школа физики высокоэнергетических процессов
Other Authors: Minakov A. V. Andrey Viktorovich, Shebeleva A. A. Anna Andreevna, Strizhak P. A. Pavel Alexandrovich, Chernetsky M. V. Mikhail Yurjevich, Volkov R. S. Roman Sergeevich
Summary:Title screen
The research presents the numerical modeling findings of the secondary breakup of droplets of coal water slurries containing petrochemicals (CWSP). The modeling method of the secondary droplet breakup is based on the VOF method for interface resolution, LES model for describing turbulence, and the technology of adapted dynamic grids. We have established the droplet breakup modes depending on the Weber number varying from 7 to 212. We have also examined the structure of the flow behind droplets. We have tested the numerical method, and the results are in good agreement with the existing experiments.
Режим доступа: по договору с организацией-держателем ресурса
Language:English
Published: 2019
Subjects:
Online Access:https://doi.org/10.1016/j.fuel.2019.06.014
Format: Electronic Book Chapter
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=660388

MARC

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200 1 |a Study of the Weber number impact on secondary breakup of droplets of coal water slurries containing petrochemicals  |f A. V. Minakov [et al.] 
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300 |a Title screen 
320 |a [References: 40 tit.] 
330 |a The research presents the numerical modeling findings of the secondary breakup of droplets of coal water slurries containing petrochemicals (CWSP). The modeling method of the secondary droplet breakup is based on the VOF method for interface resolution, LES model for describing turbulence, and the technology of adapted dynamic grids. We have established the droplet breakup modes depending on the Weber number varying from 7 to 212. We have also examined the structure of the flow behind droplets. We have tested the numerical method, and the results are in good agreement with the existing experiments. 
333 |a Режим доступа: по договору с организацией-держателем ресурса 
461 |t Fuel 
463 |t Vol. 254  |v [115606, 14 р.]  |d 2019 
610 1 |a электронный ресурс 
610 1 |a труды учёных ТПУ 
610 1 |a coal water slurry containing petrochemicals 
610 1 |a droplet 
610 1 |a secondary breakup 
610 1 |a mathematical modeling 
610 1 |a VOFLES 
610 1 |a водная суспензия 
610 1 |a математическое моделирование 
610 1 |a распад 
610 1 |a капли 
701 1 |a Minakov  |b A. V.  |g Andrey Viktorovich 
701 1 |a Shebeleva  |b A. A.  |g Anna Andreevna 
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  |3 (RuTPU)RU\TPU\pers\30871  |9 15117 
701 1 |a Chernetsky  |b M. V.  |g Mikhail Yurjevich 
701 1 |a Volkov  |b R. S.  |c specialist in the field of power engineering  |c Associate Professor of the Tomsk Polytechnic University, candidate of technical Sciences  |f 1987-  |g Roman Sergeevich  |3 (RuTPU)RU\TPU\pers\33926  |9 17499 
712 0 2 |a Национальный исследовательский Томский политехнический университет  |b Исследовательская школа физики высокоэнергетических процессов  |c (2017- )  |3 (RuTPU)RU\TPU\col\23551 
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