Determination of the armor wear and tear of the drum ball mill

dc.citation.conference7th International youth science forum «Litteris et Artibus»
dc.citation.epage191
dc.citation.journalTitleLitteris et Artibus : матеріали
dc.citation.spage190
dc.contributor.affiliationLviv Polytechnic National University
dc.contributor.authorMysak, Stepan
dc.contributor.authorKovalenko, Tetiana
dc.coverage.placenameЛьвів
dc.coverage.placenameLviv
dc.coverage.temporal23–25 листопада 2017 року
dc.coverage.temporal23–25 November, 2017
dc.date.accessioned2018-04-12T13:07:16Z
dc.date.available2018-04-12T13:07:16Z
dc.date.created2017-12-23
dc.date.issued2017-12-23
dc.description.abstractThe object of the research to develop an analytical method for determining the armor wear rate of the drum ball mill was the boiler TP-100 (TP-100A) of the 200 MW power unit of Burshtyn TPP (Ukraine), equipped with two individual dust-preparation systems with drum ball mills KBM 370/850 (Sh -50A). An effective analytical method for determining one of the main performance indicators of a drum ball mill – the wear rate of the drum armor, grinding balls and the relationship between them in case of “G” grade coal combustion for TP- 100 boilers is proposed. Its essence is to reduce human labor costs, more accurately determine the wear rate of the drum armor and grinding balls. This method is characterized by the fact that the main estimation indicator is the drum armor wear rate depending on the manufacture quality of armored plates (manufacturer).
dc.format.extent190-191
dc.format.pages2
dc.identifier.citationMysak S. Determination of the armor wear and tear of the drum ball mill / Stepan Mysak, Tetiana Kovalenko // Litteris et Artibus : proceedings, 23–25 November, 2017. — Lviv : Lviv Polytechnic Publishing House, 2017. — P. 190–191. — (7th International academic conference «Electric power engineering & control systems 2017» (EPECS-2017)).
dc.identifier.citationenMysak S. Determination of the armor wear and tear of the drum ball mill / Stepan Mysak, Tetiana Kovalenko // Litteris et Artibus : proceedings, 23–25 November, 2017. — Lviv : Lviv Polytechnic Publishing House, 2017. — P. 190–191. — (7th International academic conference «Electric power engineering & control systems 2017» (EPECS-2017)).
dc.identifier.isbn978-966-941-108-2
dc.identifier.urihttps://ena.lpnu.ua/handle/ntb/40536
dc.language.isoen
dc.publisherВидавництво Львівської політехніки
dc.publisherLviv Polytechnic Publishing House
dc.relation.ispartofLitteris et Artibus : матеріали, 2017
dc.relation.ispartofLitteris et Artibus : proceedings, 2017
dc.relation.references[1] Chernyavsky, N. V. (1998). Two-Stages Principle in Entrainec Flow Coal Gasification: Mechanisms, Experimental Results, Advantages and Disadvantages for IGCC Application. 3-rd Int. CUSTNET Conf. on Coal Utilis. Sci. and Techn. Bucharest, 44.
dc.relation.references[2] Directive 2010/75/EU of the European Parliament and of the Council of 24 November 2010 on industrial emissions (integrated poluttion prevention and control) (Recast) (2010). Eur-lex, L 334/17.
dc.relation.references[3] Jaasund, S. A. (1987). Electrostatic Precipitator: Better Wet than Dry. Chemical Engineering, 159–163.
dc.relation.references[4] Integrated Pollution Prevention and Control (IPPC) Reference Document on Best Available Techniques for Large Combustion Plants (2006). European Commission, 618.
dc.relation.references[5] Maysterenko, A. Yu., Chernyavskiy, N. V. (2011). Vliyanie kachestva uglya na efektivnost' ego pilevidnogo szhiganiya na TES Ukrainy. Energohazyaystvo za rubezhem, 5, 23–28.
dc.relation.references[6] Levit, G. T. (2015). Nekotorye rekomendacii po povysheniyu vzryvo bezopasnosti pylosistem. Energetik, 11, 66–67.
dc.relation.references[7] Holyshev, L. V., Kozemko, O. M., Mysak, Y. S. (2011). Pat. No. 99219 UA. Sposib vyznachennia produktyvnosti kulovoho barabannoho mlyna. MPK: G01F 3/00, B02C 25/00. No. a201106786; declareted: 30.05.2011; published: 25.07.2012, Bul. No. 14.
dc.relation.referencesen[1] Chernyavsky, N. V. (1998). Two-Stages Principle in Entrainec Flow Coal Gasification: Mechanisms, Experimental Results, Advantages and Disadvantages for IGCC Application. 3-rd Int. CUSTNET Conf. on Coal Utilis. Sci. and Techn. Bucharest, 44.
dc.relation.referencesen[2] Directive 2010/75/EU of the European Parliament and of the Council of 24 November 2010 on industrial emissions (integrated poluttion prevention and control) (Recast) (2010). Eur-lex, L 334/17.
dc.relation.referencesen[3] Jaasund, S. A. (1987). Electrostatic Precipitator: Better Wet than Dry. Chemical Engineering, 159–163.
dc.relation.referencesen[4] Integrated Pollution Prevention and Control (IPPC) Reference Document on Best Available Techniques for Large Combustion Plants (2006). European Commission, 618.
dc.relation.referencesen[5] Maysterenko, A. Yu., Chernyavskiy, N. V. (2011). Vliyanie kachestva uglya na efektivnost' ego pilevidnogo szhiganiya na TES Ukrainy. Energohazyaystvo za rubezhem, 5, 23–28.
dc.relation.referencesen[6] Levit, G. T. (2015). Nekotorye rekomendacii po povysheniyu vzryvo bezopasnosti pylosistem. Energetik, 11, 66–67.
dc.relation.referencesen[7] Holyshev, L. V., Kozemko, O. M., Mysak, Y. S. (2011). Pat. No. 99219 UA. Sposib vyznachennia produktyvnosti kulovoho barabannoho mlyna. MPK: G01F 3/00, B02C 25/00. No. a201106786; declareted: 30.05.2011; published: 25.07.2012, Bul. No. 14.
dc.rights.holder© Національний університет “Львівська політехніка”, 2017
dc.subjectanalytical method
dc.subjectsteam boiler
dc.subjectdrum ball mill
dc.subjectcoal
dc.subjectdrum armor wear rate
dc.subjectball wear rate
dc.subjectmill operation duration
dc.subjectball charge
dc.titleDetermination of the armor wear and tear of the drum ball mill
dc.typeConference Abstract

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