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The Effect of Flame Length on Hydrodynamics of Glass-Melting Tank in a Furnace with Horseshoe-Shaped Flame. / Dzyuzer, V. Ya.; Shvydkii, V. S.
в: Glass and Ceramics (English translation of Steklo i Keramika), Том 62, № 9-10, 01.09.2005, стр. 265-271.

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Dzyuzer VY, Shvydkii VS. The Effect of Flame Length on Hydrodynamics of Glass-Melting Tank in a Furnace with Horseshoe-Shaped Flame. Glass and Ceramics (English translation of Steklo i Keramika). 2005 сент. 1;62(9-10):265-271. doi: 10.1007/s10717-005-0088-z

Author

Dzyuzer, V. Ya. ; Shvydkii, V. S. / The Effect of Flame Length on Hydrodynamics of Glass-Melting Tank in a Furnace with Horseshoe-Shaped Flame. в: Glass and Ceramics (English translation of Steklo i Keramika). 2005 ; Том 62, № 9-10. стр. 265-271.

BibTeX

@article{09efd59fcd764aa89c43e5660cad6d88,
title = "The Effect of Flame Length on Hydrodynamics of Glass-Melting Tank in a Furnace with Horseshoe-Shaped Flame",
abstract = "It is demonstrated that the hydrodynamics of a melting tank of a contemporary highly efficient glass-melting furnace depends on a set of combined factors. Along with temperature distribution on the melt surface depending on exterior heat exchange, convection flows to a large extent depend on the tank design, the batch loading, and glass melt working conditions, as well as the working flow parameters determined by the specific output of the furnace. The combined analysis of the results of modeling external heat-exchange and the tank hydrodynamics suggest that the most advisable heating regime for the considered furnace design is when the total length of the flame is equal to the furnace length.",
author = "Dzyuzer, {V. Ya.} and Shvydkii, {V. S.}",
year = "2005",
month = sep,
day = "1",
doi = "10.1007/s10717-005-0088-z",
language = "English",
volume = "62",
pages = "265--271",
journal = "Glass and Ceramics (English translation of Steklo i Keramika)",
issn = "0361-7610",
publisher = "Springer",
number = "9-10",

}

RIS

TY - JOUR

T1 - The Effect of Flame Length on Hydrodynamics of Glass-Melting Tank in a Furnace with Horseshoe-Shaped Flame

AU - Dzyuzer, V. Ya.

AU - Shvydkii, V. S.

PY - 2005/9/1

Y1 - 2005/9/1

N2 - It is demonstrated that the hydrodynamics of a melting tank of a contemporary highly efficient glass-melting furnace depends on a set of combined factors. Along with temperature distribution on the melt surface depending on exterior heat exchange, convection flows to a large extent depend on the tank design, the batch loading, and glass melt working conditions, as well as the working flow parameters determined by the specific output of the furnace. The combined analysis of the results of modeling external heat-exchange and the tank hydrodynamics suggest that the most advisable heating regime for the considered furnace design is when the total length of the flame is equal to the furnace length.

AB - It is demonstrated that the hydrodynamics of a melting tank of a contemporary highly efficient glass-melting furnace depends on a set of combined factors. Along with temperature distribution on the melt surface depending on exterior heat exchange, convection flows to a large extent depend on the tank design, the batch loading, and glass melt working conditions, as well as the working flow parameters determined by the specific output of the furnace. The combined analysis of the results of modeling external heat-exchange and the tank hydrodynamics suggest that the most advisable heating regime for the considered furnace design is when the total length of the flame is equal to the furnace length.

UR - https://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcAuth=tsmetrics&SrcApp=tsm_test&DestApp=WOS_CPL&DestLinkType=FullRecord&KeyUT=000234463900002

UR - http://www.scopus.com/inward/record.url?partnerID=8YFLogxK&scp=28844466497

U2 - 10.1007/s10717-005-0088-z

DO - 10.1007/s10717-005-0088-z

M3 - Article

VL - 62

SP - 265

EP - 271

JO - Glass and Ceramics (English translation of Steklo i Keramika)

JF - Glass and Ceramics (English translation of Steklo i Keramika)

SN - 0361-7610

IS - 9-10

ER -

ID: 39716311