Abstract
The results of an analysis of the functioning of glass furnaces for melting semi-white or discolored glass as an object of automatic control and management are presented. Through experimental research, a parametric control scheme for a glass melting furnace was formed and a system for improved control of thermal glass melting processes was synthesized. The proposed system regulates the parameters of a furnace with a horseshoe-shaped flame development. Based on commercially produced instruments and automation equipment that ensure stabilization of thermal conditions of glass melting. The burner block control algorithm provides control over the performance of the gas burner, safety valve and gas supply valve. The optimal operating mode of the furnace is ensured by controlling the flame temperature, regulating the excess oxygen in the exhaust gases, the level of glass melt and the pressure of the flow gases. The feasibility of using fuzzy control in an advanced control system is shown, generating a control signal such that a change in one parameter does not affect the temperature regime of the furnace. The results of simulation control indicate that to ensure optimal operation of a glass melting furnace, it is necessary to control the excess oxygen in the exhaust gases, the level of glass melt and the pressure of the flue gases.
First Page
68
Last Page
74
References
- Rinieri, F., Balbi, J.H. (2006). Santoni On the use of an infra-red camera for the measurement of temperature in fires of vegetative fuels, QIRT. URL: http://qirt.gel.ulaval.ca/archi-ves/qirt2006/papers/011.pdf.
- Qi Jianling, Deng Zhenjie, Li Yezi (2007). Design of Fuzzy PID Controller and Application in Glass Furnace. The Yeighth International Conference on Yelectronic Measurement and Instruments “ICEMI-2007”, 224-227.
- Yusupbekov, N.R., Kholmanov, U.U. (2020). Dynamic model of the technological process of glass melting in glass melting furnaces. Industrial ACS and Controllers. 9, 19-26
- Milan Honner, Zdeněk Veselý, Michal Svantner, František Čejka (2001). Optimal heating control system for continuous furnaces. Scandinavian Journal of Metallurgy.
- Kholmanov, U.U. (2022). Mathematical modeling of the glass melting process in the glass furnace bath. Chemical technology control and management, 4-5, 128-133.
- Gulyamov, Sh.M., Rajabov, A.T., Kholmanov, U.U. (2021). Intelligent Glass Furnaces Temperature Control System Intelligent Glass Furnaces Temperature Control System. Solid State Technology, 64(2), 3156-3163.
- Eremin, A.O., Gubinsky, V.I. (2011). Influence of dynamic characteristics of fuel and air jets on the circulation and temperature field of gases in a chamber furnace with one burner. Technical thermal physics and industrial thermal energy: coll. of science pr. 3, 102-116.
- Parsunkin, B.N., Andreev, S.M., Akhmetov, T.U., Bondareva, A.R., Parsunkin, B.N. (2013). Optimal energy-saving control of fuel combustion in industrial furnaces. Engineering: a network electronic scientific journal. 1, 22-27.
- Backx, A.C. (2002). Model-based glass melter control. Mathematical simulation in glass technology, 137-155.
- Chmelar, J., Bodi, R., Muysenberg, E. (2001). Supervisory advanced control of glass melters and forehearths by expert system. Proc. Int. Congr. Glass. 1, 247-254.
- Kholmanov, U.U., Rajabov, A.T. (2021). Automatic Control of Fuel Efficiency in Gas Burning Furnaces. 11th World Conference “Intelligent System for Industrial Automation” (WCIS-2020), Tashkent, Uzbekistan, 334–341. https://doi.org/10.1007/978-3-030-68004-6_44.
- Yusupbekov, N.R., Kholmanov, U.U. (2023). Trends in the development and improvement of glass furnaces and monitoring and control systems. Chemical technology control and management, 5, 63-75.
- Yusupbekov, N.R., Holmanov, U.U. (2019). Programmnoe obespechenie dlya intellektual'noj sistemy regulirovaniya i upravleniya raskhodov gaza i vozduha v pechah plavleniya syr'ya dlya stekla [Software for an intelligent system for regulating and controlling gas and air flow rates in furnaces for melting raw materials for glass]. Agentstvo po intellektual'noj sobstvennosti RUz. DGU 06267. (in Russian).
- Yusupbekov, N.R., Holmanov, U.U., Niyozov, A.G. (2020). Programmnoe obespechenie dlya nepreryvnogo kontrolya i avtomaticheskoj regulirovki temperatury i davleniya pechi v gazovyh pechah [Software for continuous monitoring and automatic adjustment of oven temperature and pressure in gas ovens]. Agentstvo intellektual'noj sobstvennosti RUz. DGU 09315. (in Russian).
Recommended Citation
Xolmanov, O'tkir
(2023)
"SYSTEM FOR ADVANCED CONTROL OF THERMAL PARAMETERS OF GLASS FURNACES,"
Chemical Technology, Control and Management: Vol. 2023:
Iss.
6, Article 11.
DOI: https://doi.org/10.59048/2181-1105.1531
Included in
Complex Fluids Commons, Controls and Control Theory Commons, Industrial Technology Commons, Process Control and Systems Commons