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Maximizing the Productivity of a Gas Melting Furnace with Regard to the Ecological Efficiency of its Operation

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Management Systems in Production Engineering
Special Issue: IMTech2020-INNOVATIVE MINING TECHNOLOGIES. Editors: Dariusz Prostański, Bartosz Polnik

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[1] S.H. Al-Jibouri. “Monitoring systems and their effectiveness for project cost control in construction.” International Journal of Project Management, vol. 21, pp. 145-154, 2003.10.1016/S0263-7863(02)00010-8 Search in Google Scholar

[2] P. Baron, A. Panda, M. Pollák and T. Cmorej. “Modification of production process structure and optimization of material flow for selected types of components computer simulation means.” MM Science Journal, vol. 2017(11), pp. 1895-1900, 2017. Search in Google Scholar

[3] S. Banerjee, D. Sanyal, S. Sen and I.K. Puri. “A methodology to control direct-fired furnaces.” International Journal of Heat and Mass Transfer, vol. 47, pp. 5247-5256, 2004. Search in Google Scholar

[4] B.S. Brewster, B.W. Webb, M.Q. McQuay, M. D’Agostini and C.E. Baukal. “Combustion measurements and modeling in an oxygen-enriched aluminum-recycling furnace.” The International Journal of Energy, vol. 74, pp. 11-17, 2001. Search in Google Scholar

[5] I. Čorný. “Overview of progressive evaluation methods for monitoring of heat production and distribution.” Procedia Engineering, vol. 190, pp. 619-626, 2016.10.1016/j.proeng.2017.05.388 Search in Google Scholar

[6] J. Dubják, J. Piteľ and M. Majovská.” Diagnostics of aluminum alloys melting temperature in high pressure casting.” Key Engineering Materials, vol. 669, pp. 110-117, 2016.10.4028/www.scientific.net/KEM.669.110 Search in Google Scholar

[7] M.W. Edward, L.S. Donald and O. Ken. “Evaluating aluminum melting furnace transient energy efficiency.” in Proceedings of Symposia held during TMS 2009, Annual Meeting and Exhibition, Warrendale TMS, 2009, pp. 43-51. Search in Google Scholar

[8] E. Faltinová, et al. “Reliability analysis of crane lifting mechanism.” Scientific journal of silesian university of technology-series transport, vol. 98, pp. 15-26, 2018.10.20858/sjsutst.2018.98.2 Search in Google Scholar

[9] B. Golchert, P. Ridenour, W. Walker, M. Gu, N.K. Selvarasu and C. Zhou. “Effect of nitrogen and oxygen concentrations on Nox emissions in an aluminum furnace.” in Proc. ASME-IMECE, IMECE2006-15693, USA, 2006, pp. 323-333.10.1115/IMECE2006-15693 Search in Google Scholar

[10] T.X. Li, M. Hassan, K. Kuwana, K. Saito and P. King. “Performance of secondary aluminum melting: Thermodynamic analysis and plant-site experiments.” Energy, vol. 31(12), pp. 1433-1443, 2006. Search in Google Scholar

[11] T. Krenický, J. Ružbarský and A. Panda. “Operation and Diagnostics of Machines and Production Systems Operational States 3.” Key Engineering Materials, vol. 669, pp. 596, 2016. Search in Google Scholar

[12] L. Lazic, A. Varga and J. Kizek. “Analysis of combustion characteristic in an aluminum melting furnace.” Metalurgija, vol. 44(3), pp. 192-199, 2005. Search in Google Scholar

[13] J. Maščenik. “Implementation of the designed program for calculation and check of chain gears.” MM Science Journal, vol. 2019(december), pp. 3431-3434, 2019.10.17973/MMSJ.2019_12_2019008 Search in Google Scholar

[14] M. Miškiv-Pavlík, J. Jurko, K. Židek, A. Hošovský and K. Monková. “Measurement of distance and displacement by non-contact confocal sensors.” Studia i Materiały, vol. 39(1), pp. 6-12, 2019. Search in Google Scholar

[15] A. Mukhopadhyay, I.K. Puri, S. Zelepouga and D.M. Rue. “Numerical simulation of methane-air nozzle burners for aluminum remelt furnaces.” in Proc. ASME-IMECE, HTD-24234, USA, 2001, pp. 65-71.10.1115/IMECE2001/HTD-24234 Search in Google Scholar

[16] A.O. Nieckele, M.F. Naccache and M.S.P. Gomes. “Numerical simulation of a three dimensional aluminum melting furnace.” Journal of Energy Resources, vol. 126, pp. 72-81, 2004.10.1115/1.1625396 Search in Google Scholar

[17] A.O. Nieckele, M.F. Naccache and M.S.P. Gomes. “Combustion performance of an aluminum melting furnace operating with natural gas and liquid fuel.” Applied Thermal Engineering, vol. 31, pp. 841-851, 2011.10.1016/j.applthermaleng.2010.11.003 Search in Google Scholar

[18] A. Panda, et al. “Production by FDM method RP technology from PLA eco-materials extruded horizontally in length.” MM Science Journal, vol. 2018(3), pp. 2179-2182, 2018. Search in Google Scholar

[19] A. Panda, M. Hatala, K. Dyadyura, J. Duplák and A. Yunak. “Machinability Research by New Abrasion-Resistant Cast Irons Cutting.” Key Engineering Materials, vol. 669, pp. 118-12, 201610.4028/www.scientific.net/KEM.669.118 Search in Google Scholar

[20] I. Pandová and R. Bielousová. “Methods for the protection of the exterior air under emissions of oxides of nitrogen.” Studia i Materiały, vol. 38(6), pp. 65-68, 2018. Search in Google Scholar

[21] S. Pavlenko, J. Maščenik and T. Krenický. Worm gears: general information, calculations, dynamics and reliability. Lüdenscheid: RAM-Verlag, 2018, pp. 167. Search in Google Scholar

[22] M. Pollák and J. Tkáč. “Enterprise information data management system for small manufacturing company.” TEM Journal - Technology, Education, Management, Informatics, vol. 8(4), pp. 1169-1175, 2019. Search in Google Scholar

[23] M. Rimár, M. Fedák, A. Kulikov and P. Šmeringai. “Study of gaseous flows in closed area with forced ventilation.” MM Science Journal, vol. 2018(3), pp. 2188-2191, 2018. Search in Google Scholar

[24] L. Sukhodub, A. Panda, K. Dyadyura, I. Pandová and T. Krenický. “The design criteria for biodegradable magnesium alloy implants.” MM Science Journal, vol. 2018(December), pp. 2673-2679, 2018. Search in Google Scholar

[25] Ľ. Straka and S. Hašová. “The critical failure determination of the constructional parts of autonomous electroerosion equipment by applying Boolean logic.” Academic Journal of Manufacturing Engineering, vol. 14(2), pp. 80-86, 2016. Search in Google Scholar

[26] S. Yan, et al. “Study on point bar residual oil distribution based on dense well pattern in Sazhong area.” Journal of Mines, Metals and Fuels, vol. 65(12), pp. 743-748, 2017. Search in Google Scholar

[27] J.M. Wanga, H.J. Yana, J.M. Zhoua, S.X Lib and G.Ch. Guib. “Optimization of parameters for an aluminum melting furnace using the Taguchi approach.” Applied Thermal Engineering, vol. 33-43, pp. 33-34, 2012.10.1016/j.applthermaleng.2011.09.007 Search in Google Scholar

[28] W. Zhang and X. Wang. “Simulation of the inventory cost for rotable spare with fleet size impact.” Academic Journal of Manufacturing Engineering, vol. 15(4), pp. 124-132, 2017. Search in Google Scholar

[29] Instruction manual of flue gas analyser Testo 340. Search in Google Scholar