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dc.contributor.authorTimoshenko, S.-
dc.contributor.authorGybinskyi, M.-
dc.contributor.authorYaroshenko, Yu.-
dc.contributor.authorVvedenska, T.-
dc.date.accessioned2020-03-04T13:10:07Z-
dc.date.available2020-03-04T13:10:07Z-
dc.date.issued2018-
dc.identifier.citationVII All- Russian Conf. “Heat Engineering and Computer Science in Education, Science and Production”. KnE Engineering, 2018. Pages 35–49.uk_UK
dc.identifier.urihttp://ea.donntu.edu.ua/jspui/handle/123456789/31667-
dc.descriptionIn the foundries of machine-building plants an electric arc furnaces(EAF) with a capacity of 3–6 tons are widely used. Low capacity of transformer, power-consuming classical technology, inefficient aspiration system and long (up to 24 hours and more) downtime, predetermine their low energy efficiency in comparison with the EAF of a ‘large’ metallurgy. An urgent task is the development of low-cost energy-efficient solutions for the foundry class EAF modernization. Proposed solutions are justified by methods of numerical modeling.uk_UK
dc.description.abstractA set of low-cost energy-efficient solutions for electric arc furnaces (EAF) of a foundry class is proposed: ‘deep’ bath, water-cooled panels with a spatial structure, a system of dispersed aspiration. Numerical simulations of thermal operation and gas-dynamics for 3-ton EAF in conditions of long downtime show the possibility of reduction energy consumption by 6.5–9%, fugitive emissions by 2 times, melting dust removal from the EAF by 19% and significant lowering of specific refractory and electrodes expenditure.uk_UK
dc.language.isoenuk_UK
dc.publisherKnE Engineeringuk_UK
dc.subjectElectric arc furnace, heat exchange during downtime, energy efficiency, bath geometry, water-cooled elements with a spatial structure, a system of dispersed aspirationuk_UK
dc.titleIncreasing Energy Efficiency of Electric Arc Foundry Furnacesuk_UK
dc.typeArticleuk_UK
Розташовується у зібраннях:Наукові праці співробітників кафедри Електричної інженерії

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