View factors for surface zones / Koptelov R.P., Malikov G.K., Lisienko V.G. // Steel in Translation. - 2013. - V. 43, l. 1. - P. 5-12.

ISSN:
09670912
Type:
Article
Abstract:
Methods of calculating view factors with different surface configurations are compared. A simple approach is proposed for estimating the error in calculating the view factors. An algorithm is formulated for selection of the method and the number of points of integration prior to the calculation. The algorithm significantly reduces the computation time by minimizing the number of integration points required, without loss of precision. © 2013 Allerton Press, Inc.
Author keywords:
Index keywords:
Computation time; Minimizing the number of; Simple approach; Surface configuration; Surface zones; View factor; Materials science; Steel construction; Algorithms
DOI:
10.3103/S096709121301004X
Смотреть в Scopus:
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84876523248&doi=10.3103%2fS096709121301004X&partnerID=40&md5=bdc86e99097d03d9f3c11651305e63d1
Соавторы в МНС:
Другие поля
Поле Значение
Link https://www.scopus.com/inward/record.uri?eid=2-s2.0-84876523248&doi=10.3103%2fS096709121301004X&partnerID=40&md5=bdc86e99097d03d9f3c11651305e63d1
Affiliations Ural Federal University, Ural, Russian Federation
References Modest, M.F., (2003) Radiative Heat Transfer, , New York: Academic; Lisienko, V.G., (2010) Sovershenstvovanie I Povyshenie Effektivnosti Energotekhnologii I Proizvodstv. Integrirovanyi Energo-Ekologicheskii Analiz: Teoriya I Praktika (Improving Electrical Technology in Production: Theory and Practice of Energy-Ecological Analysis), , Moscow: Teplotekhnik; Emery, A.F., Johansson, O., Lobo, M., Abrous, A., (1991) ASME J. Heat Trans., (113), pp. 413-422; Malikov, G.K., Lisienko, V.G., Koptelov, R.P., (2010) Izv. Vyssh. Uchebn. Zaved., Chern. Metall., (7), pp. 53-59; Walton, G.N., (2002) Calculation of Obstructed View Factors by Adaptive Integration, , Washington: National Institute of Standards and Technology; Hottel, H.C., Sarofim, A.F., (1967) Radiative Transfer, , New York: McGraw-Hill; Mitalas, G.P., Stephenson, D.G., (1966) Fortran IV Program to Calculate Radiant Interchange Factors, , Ottawa, Canada: NRC; Schroder, P., Hanrahan, P., (1993) A Closed Form Expression for the Form Factor between Two Polygons, , Department of Computer Science, Princeton University, Technical Report CS-404-93; Cohen, M.F., Greenberg, D.P., (1985) ACM SIGGRAPH, 19 (3), pp. 31-40; Recker, R.J., George, D.W., Greensberg, D.P., (1990) Computer Graphics, 25 (2), pp. 59-66; Beran-Koehn, J.C., Pavicic, M.J., Delta Form Factor Calculations for the Cubic Tetrahedral Algorithm (1992) Graphics Gems III, pp. 324-328. , New York: Academic; Kim, S., Yoon, K., An Alternative to the Hemicube Algorithm for Computing Form Factors (2000) Graphicon International Conference, Moscow; Subhash, C.M., Shukla, A., Yadav, V., (2008) Int. Comm. Heat Mass Trans., 35 (5), pp. 630-636; DiLaura, D.L., (1999) Proceedings of Thirty-Third National Heat Transfer Conference, Albuquerque, pp. 99-107; Glassner, A.S., (1990) Graphics Gems I, pp. 301-303. , New York: Academic
Correspondence Address Koptelov, R. P.; Ural Federal University, Ural, Russian Federation
Language of Original Document English
Abbreviated Source Title Steel Transl.
Source Scopus