THERMAL SCIENCE

International Scientific Journal

METHODOLOGY OF EXPERIMENTAL OPTIMIZATION OF ATMOSPHERIC BURNERS FOR HOUSEHOLD APPLIANCES

ABSTRACT
The aim of this experimental research is to confirm the correctness of the proposed methodology for optimizing atmospheric gas burners. Also, the burner was tested in actual conditions. The object of this experimental optimization is a typical modern atmospheric gas burner for households (required heat output for average households ranges from 8-12 kW) to which the proposed methodology will be applied in order to optimize its design characteristics and performance to obtain energy efficient and an environmentally friendly device.
KEYWORDS
PAPER SUBMITTED: 2023-04-10
PAPER REVISED: 2023-05-29
PAPER ACCEPTED: 2023-06-14
PUBLISHED ONLINE: 2023-07-16
DOI REFERENCE: https://doi.org/10.2298/TSCI230410156M
CITATION EXPORT: view in browser or download as text file
THERMAL SCIENCE YEAR 2024, VOLUME 28, ISSUE Issue 1, PAGES [569 - 577]
REFERENCES
  1. Williams, F. A., Progress in Knowledge of Flamlet Structure and Axtinction, Department of Mechanical and Aerospace Engineering, University of California, San Diego, Cal., USA, 2000
  2. Drašković, D., et al., Sagorevanje (Combustion - in Serbian), Mašinski Fakultet Beograd, Srbija, 1986
  3. Takeno, T., Bray, K., A Simple Analysis of the Influence of Strain and Curvature on Laminar Premixed Flames, Memoirs of School of Engineering, Nagoya University, Nagoya, 53 (2001), 1-2
  4. Kuo, K. K.-Y., Principles of combustion, A Wiley-Interscience Publication, John Wiley and Soons, New York, USA, 1986
  5. Burgerss, C. P., Lawn, C. J., The Premixture Model of Turbulent Burning to Describe Lifted Jet Flames, Department of Engineering, Queen Mary and Westfield College, London, UK, 1999
  6. Hedrick, J. K., et al., Application of Formal Optimization Procedures to Film Cooling Design, Arizona State University, Tempre, Ariz., USA, 1978
  7. ***, Modelling of Premixed Combustion, Fluent Inc., 11, 2005
  8. Fotev, V., et al., Influence of Combustion Instabilities on the Heater Appliance with Atmospherich Gas Burner and Elimination by Cross-flow of Air, Thermal Science, 20 (2016), 5, pp. 1753-1763
  9. Fotev, V., et al., Increasing the Speed of CFD Procedure for Minimization the Nitrogen Oxide Polution from the Premixed Atmospheric Gas Burner, Thermal Science, 21 (2017), 2, pp. 1031-1041

© 2024 Society of Thermal Engineers of Serbia. Published by the Vinča Institute of Nuclear Sciences, National Institute of the Republic of Serbia, Belgrade, Serbia. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution-NonCommercial-NoDerivs 4.0 International licence