A new method for direct exchange area calculation in zonal method of radiant heat transfer modeling in combustion furnaces / Malikov G., Lisienko V., Titaev A., Viskanta R. // ASME International Mechanical Engineering Congress and Exposition, Proceedings (IMECE). - 2014. - V. 8A, l. .

ISSN:
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Type:
Conference Paper
Abstract:
A new method based on the discrete transfer modeling technique for calculating the direct exchange areas (DEA) in zonal methods of radiation heat transfer is presented. The key feature of this method is a fast DEA matrix evaluation. The computational time was found to be short in comparison to other methods for direct exchange areas calculation based on numerical quadrature integration. The accuracy of the procedure is assessed by comparing the predictions with those based on the numerical integration for a test case (IFRF furnace). Copyright © 2014 by ASME.
Author keywords:
Index keywords:
Numerical methods; Combustion furnaces; Computational time; Direct Exchange Areas; IFRF furnaces; Numerical integrations; Numerical quadrature; Transfer models; Zonal method; Heat transfer
DOI:
10.1115/IMECE2014-36983
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https://www.scopus.com/inward/record.uri?eid=2-s2.0-84926376345&doi=10.1115%2fIMECE2014-36983&partnerID=40&md5=fb5730d3febcc8ab23c96f3f03d3e9be
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Link https://www.scopus.com/inward/record.uri?eid=2-s2.0-84926376345&doi=10.1115%2fIMECE2014-36983&partnerID=40&md5=fb5730d3febcc8ab23c96f3f03d3e9be
Affiliations Ural Federal University, 19 Mira St., Ekaterinburg, Russian Federation; Purdue University, 1288 Purdue Mall, West Lafayette, IN, United States
References Lockwood, F.C., Shah, N.G., A new radiation solution method for incorporation in general combustion prediction procedures (1981) Eighteenth Symposium on Combustion, pp. 1405-1412. , The Combustion Institute, Pittsburgh; Hyde, D.J., Truelove, J.S., The discrete ordinates approximation for multidimensional radiant heat transfer in furnaces (1977) AERE R-8502, , AERE Harwell, UK; Kim, S.H., Huh, K.Y., Assessment of the finite-volume method and the discrete ordinates method for radiative heat transfer in a three-dimensional rectangular enclosure (1999) Numerical Heat Transfer, Part B, 35, pp. 85-112; Jamaluddin, A.S., Smith, P.J., Predicting radiative transfer in rectangular enclosures using the discrete ordinates method (1988) Combustion Science and Technology, 59, pp. 321-340; Modest, M.F., (2003) Radiative Heat Transfer, , Second Edition, Academic Press, New York; Hottel, H.C., Sarofim, A.F., (1967) Radiative Transfer, , McGraw-Hill, New York; Knaus, H., Schneider, R., Han, X., Comparison of different radiative heat transfer models and their applicability in coal-fired utility boiler simulations (1997) 4th Internatational Conference on Technologies and Combustion for a Clean Environment, pp. 1-8. , 7-10 July 1997, Lisbon (Portugal); Mazumder, S., Methods to accelerate ray tracing in the Monte Carlo method for surface-to-surface radiation transport (2006) Journal of Heat Transfer, 128 (9), pp. 945-952; Ambirajan, A., Venkateshan, S.P., Accurate determination of diffuse view-factors between planar surfaces (1993) International Journal of Heat and Mass Transfer, 36 (8), pp. 2203-2208; Cheney, W., Kincaid, W., (1985) Numerical Mathematics and Computing, , Second Edition, Brooks-Cole Publishing Company; Malikov, G., Lisienko, V., Malikov, Y., Chudnovsky, Y., Viskanta, R., A coupled solution procedure for zonal radiative and convective heat transfer in 3-d enclosures with blockages and screens IMECE2007-43154/Proc. ASME 2007 International Mechanical Engineering Congress and Exposition
Sponsors ASME
Publisher American Society of Mechanical Engineers (ASME)
Conference name ASME 2014 International Mechanical Engineering Congress and Exposition, IMECE 2014
Conference date 14 November 2014 through 20 November 2014
Conference code 111737
Language of Original Document English
Abbreviated Source Title ASME Int Mech Eng Congress Expos Proc
Source Scopus