Design of a Radiant Heat Capturing Device for Steel Mills
This paper approaches the energy transition towards decarbonization and lower primary energy use in the steel and glass industries through the exploitation of radiant waste heat. In contrast with exhaust gases heat recovery, radiant waste heat has typically not been used. This energy waste is found...
Guardado en:
Autores principales: | , , , , , , , , |
---|---|
Formato: | article |
Lenguaje: | EN |
Publicado: |
SDEWES Centre
2021
|
Materias: | |
Acceso en línea: | https://doaj.org/article/bac802dae6e5413d8d581b798fab57cc |
Etiquetas: |
Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
|
id |
oai:doaj.org-article:bac802dae6e5413d8d581b798fab57cc |
---|---|
record_format |
dspace |
spelling |
oai:doaj.org-article:bac802dae6e5413d8d581b798fab57cc2021-11-20T09:32:48ZDesign of a Radiant Heat Capturing Device for Steel Mills1848-925710.13044/j.sdewes.d8.0365https://doaj.org/article/bac802dae6e5413d8d581b798fab57cc2021-09-01T00:00:00Z http://www.sdewes.org/jsdewes/pid8.0365 https://doaj.org/toc/1848-9257This paper approaches the energy transition towards decarbonization and lower primary energy use in the steel and glass industries through the exploitation of radiant waste heat. In contrast with exhaust gases heat recovery, radiant waste heat has typically not been used. This energy waste is found in energy intensive processes in which high temperatures are reached. For instance, in the steel making process, the cast steel is red hot and emits a considerable amount of radiant energy. In this paper the conceptual design of a radiant heat capturing device is presented. This device enables the recovery of currently unused energy while solving the radiative emission-related problems. The achieved design gets to an optimized solution regarding view factors and optical properties of the involved surfaces. In this research work, those factors are optimized to maximize the amount of heat recovered by the presented device. Simulation tools are used to test different designs and define the most appropriate solution for a given case.Susana López PérezSaioa Herrero LópezEduardo Ubieta AstigarragaItzal del Hoyo ArceMercedes Gómez de Arteche BotasJon Iturralde IñargaPeru Fernández de Arroiabe TxapartegiM. Mounir Bou-AliIñigo Unamuno IriondoSDEWES Centrearticleradiationwaste heat recoveryiron industrysteel industrydymola® simulationzemax® simulationTechnologyTEconomic growth, development, planningHD72-88ENJournal of Sustainable Development of Energy, Water and Environment Systems, Vol 9, Iss 3, Pp 1-15 (2021) |
institution |
DOAJ |
collection |
DOAJ |
language |
EN |
topic |
radiation waste heat recovery iron industry steel industry dymola® simulation zemax® simulation Technology T Economic growth, development, planning HD72-88 |
spellingShingle |
radiation waste heat recovery iron industry steel industry dymola® simulation zemax® simulation Technology T Economic growth, development, planning HD72-88 Susana López Pérez Saioa Herrero López Eduardo Ubieta Astigarraga Itzal del Hoyo Arce Mercedes Gómez de Arteche Botas Jon Iturralde Iñarga Peru Fernández de Arroiabe Txapartegi M. Mounir Bou-Ali Iñigo Unamuno Iriondo Design of a Radiant Heat Capturing Device for Steel Mills |
description |
This paper approaches the energy transition towards decarbonization and lower primary energy use in the steel and glass industries through the exploitation of radiant waste heat. In contrast with exhaust gases heat recovery, radiant waste heat has typically not been used. This energy waste is found in energy intensive processes in which high temperatures are reached. For instance, in the steel making process, the cast steel is red hot and emits a considerable amount of radiant energy. In this paper the conceptual design of a radiant heat capturing device is presented. This device enables the recovery of currently unused energy while solving the radiative emission-related problems. The achieved design gets to an optimized solution regarding view factors and optical properties of the involved surfaces. In this research work, those factors are optimized to maximize the amount of heat recovered by the presented device. Simulation tools are used to test different designs and define the most appropriate solution for a given case. |
format |
article |
author |
Susana López Pérez Saioa Herrero López Eduardo Ubieta Astigarraga Itzal del Hoyo Arce Mercedes Gómez de Arteche Botas Jon Iturralde Iñarga Peru Fernández de Arroiabe Txapartegi M. Mounir Bou-Ali Iñigo Unamuno Iriondo |
author_facet |
Susana López Pérez Saioa Herrero López Eduardo Ubieta Astigarraga Itzal del Hoyo Arce Mercedes Gómez de Arteche Botas Jon Iturralde Iñarga Peru Fernández de Arroiabe Txapartegi M. Mounir Bou-Ali Iñigo Unamuno Iriondo |
author_sort |
Susana López Pérez |
title |
Design of a Radiant Heat Capturing Device for Steel Mills |
title_short |
Design of a Radiant Heat Capturing Device for Steel Mills |
title_full |
Design of a Radiant Heat Capturing Device for Steel Mills |
title_fullStr |
Design of a Radiant Heat Capturing Device for Steel Mills |
title_full_unstemmed |
Design of a Radiant Heat Capturing Device for Steel Mills |
title_sort |
design of a radiant heat capturing device for steel mills |
publisher |
SDEWES Centre |
publishDate |
2021 |
url |
https://doaj.org/article/bac802dae6e5413d8d581b798fab57cc |
work_keys_str_mv |
AT susanalopezperez designofaradiantheatcapturingdeviceforsteelmills AT saioaherrerolopez designofaradiantheatcapturingdeviceforsteelmills AT eduardoubietaastigarraga designofaradiantheatcapturingdeviceforsteelmills AT itzaldelhoyoarce designofaradiantheatcapturingdeviceforsteelmills AT mercedesgomezdeartechebotas designofaradiantheatcapturingdeviceforsteelmills AT joniturraldeinarga designofaradiantheatcapturingdeviceforsteelmills AT perufernandezdearroiabetxapartegi designofaradiantheatcapturingdeviceforsteelmills AT mmounirbouali designofaradiantheatcapturingdeviceforsteelmills AT inigounamunoiriondo designofaradiantheatcapturingdeviceforsteelmills |
_version_ |
1718419446770434048 |