STUDY AND SIMULATION OF HEAT TRANSFER PROCESSES DURING FOAM GLASS HIGH TEMPERATURE PROCESSING
The paper presents basic aspects of simulation of pores formation and growth in the foam glass structure process during raw material mixture high temperature processing. The key mathematical approaches to heat transfer processes simulation and the dynamics of the pores radius growth in the raw mate...
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doaj-6882556497ce432ca4e815115e12ec392020-11-25T02:51:56ZengPublishing House ASVInternational Journal for Computational Civil and Structural Engineering2587-96182588-01952018-09-0114310.22337/2587-9618-2018-14-3-153-160STUDY AND SIMULATION OF HEAT TRANSFER PROCESSES DURING FOAM GLASS HIGH TEMPERATURE PROCESSINGSergey V. Fedosov0Maksim O. Bakanov1Sergey N. Nikishov2vanovo State Polytechnic University, Ivanovo, RUSSIAIvanovo Fire Rescue Academy of State Firefighting Service of Ministry of Russian Federation for Civil Defense, Emergencies and Elimination of Consequences of Natural Disasters, Ivanovo, RUSSIAIvanovo State Polytechnic University, Ivanovo, RUSSIA The paper presents basic aspects of simulation of pores formation and growth in the foam glass structure process during raw material mixture high temperature processing. The key mathematical approaches to heat transfer processes simulation and the dynamics of the pores radius growth in the raw material mixture structure are presented. The key assumptions and restrictions allowing representing the most adequate research outcomes at this stage of the subject development are outlined. http://ijccse.iasv.ru/article/view/163foam glass, heat treatment, mathematical simulation, temperature patterns, surface tension, viscosity |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Sergey V. Fedosov Maksim O. Bakanov Sergey N. Nikishov |
spellingShingle |
Sergey V. Fedosov Maksim O. Bakanov Sergey N. Nikishov STUDY AND SIMULATION OF HEAT TRANSFER PROCESSES DURING FOAM GLASS HIGH TEMPERATURE PROCESSING International Journal for Computational Civil and Structural Engineering foam glass, heat treatment, mathematical simulation, temperature patterns, surface tension, viscosity |
author_facet |
Sergey V. Fedosov Maksim O. Bakanov Sergey N. Nikishov |
author_sort |
Sergey V. Fedosov |
title |
STUDY AND SIMULATION OF HEAT TRANSFER PROCESSES DURING FOAM GLASS HIGH TEMPERATURE PROCESSING |
title_short |
STUDY AND SIMULATION OF HEAT TRANSFER PROCESSES DURING FOAM GLASS HIGH TEMPERATURE PROCESSING |
title_full |
STUDY AND SIMULATION OF HEAT TRANSFER PROCESSES DURING FOAM GLASS HIGH TEMPERATURE PROCESSING |
title_fullStr |
STUDY AND SIMULATION OF HEAT TRANSFER PROCESSES DURING FOAM GLASS HIGH TEMPERATURE PROCESSING |
title_full_unstemmed |
STUDY AND SIMULATION OF HEAT TRANSFER PROCESSES DURING FOAM GLASS HIGH TEMPERATURE PROCESSING |
title_sort |
study and simulation of heat transfer processes during foam glass high temperature processing |
publisher |
Publishing House ASV |
series |
International Journal for Computational Civil and Structural Engineering |
issn |
2587-9618 2588-0195 |
publishDate |
2018-09-01 |
description |
The paper presents basic aspects of simulation of pores formation and growth in the foam glass structure process during raw material mixture high temperature processing. The key mathematical approaches to heat transfer processes simulation and the dynamics of the pores radius growth in the raw material mixture structure are presented. The key assumptions and restrictions allowing representing the most adequate research outcomes at this stage of the subject development are outlined.
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topic |
foam glass, heat treatment, mathematical simulation, temperature patterns, surface tension, viscosity |
url |
http://ijccse.iasv.ru/article/view/163 |
work_keys_str_mv |
AT sergeyvfedosov studyandsimulationofheattransferprocessesduringfoamglasshightemperatureprocessing AT maksimobakanov studyandsimulationofheattransferprocessesduringfoamglasshightemperatureprocessing AT sergeynnikishov studyandsimulationofheattransferprocessesduringfoamglasshightemperatureprocessing |
_version_ |
1724732401788125184 |