By Ephraim M. Sparrow, John Patrick Abraham, John M. Gorman, Young I. Cho

ISBN-10: 0128002093

ISBN-13: 9780128002094

Advances in warmth Transfer fills the data hole among usually scheduled journals and university-level textbooks by means of supplying in-depth evaluation articles over a broader scope than in journals or texts. The articles, which function a wide assessment for specialists within the box, can be of serious curiosity to non-specialists who have to retain up to date with the result of the most recent research. This serial is crucial analyzing for all mechanical, chemical and business engineers operating within the box of warmth move, graduate faculties or industry.

  • Never earlier than have such a lot of professionals supplied either retrospective and present overviews.

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Additional resources for Advances in Heat Transfer, Volume 46

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001 © 2014 Elsevier Inc. All rights reserved. 47 j 48 Raymond Viskanta theory. The focus in the article is on modeling of radiation heat exchange among ideal and real surfaces. Conjugate heat transferdradiation combined with conduction and/or convectiondis briefly discussed. Radiative transfer in participating media is considered next, and the interaction of radiation with other modes of heat transfer is examined. Finally, some unsolved problems needing future research attention are identified. Nomenclature Bij Gebhart’s absorption factor (-) Bo Boltzmann number c velocity of light (m/s) E emitted flux (W/m2) Eb blackbody emitted flux (W/m2) F radiative flux vector defined by Eq.

Comput. Fluid Mech. 18 (2004) 1–14. [8] C. Liang, G. Papadakis, Large-eddy simulation of cross-flow through a staggered tube bundle at sub-critical Reynolds number, J. Fluids Struct. 23 (2007) 1215–1230. [9] A. Ridluan, A. Tohuhiro, Benchmark simulation of a turbulent flow through a staggered tube bundle to support CFD as a reactor design tool. Part II: URANS CFD simulation, J. Nucl. Sci. Technol. 45 (2008) 1305–1315. W. Johnson, Modeling strategies for unsteady turbulent flows in the lower plenum of the VHTR, Nucl.

Yayi, Structure of gas flow and vibration in tube banks with tube axes normal to the flow, in: Proc. Int. Symp. On Marine Engineering, Toko, Japan, 1-5-2-1-15-33, 1973. [12] C. Iwaki, K. Cheong, H. Monji, G. Matsui, PIV measurements of vertical cross-flow structure over tube bundles, Exp. Fluids 37 (2004) 350–363. [13] S. Aiba, H. Tsuchida, T. Otra, Heat transfer around tubes in in-line tube banks, Bull. JSME 25 (1982) 219–226. [14] I. D. thesis), The University Manchester, 2007. [15] R. Jones, J.

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Advances in Heat Transfer, Volume 46 by Ephraim M. Sparrow, John Patrick Abraham, John M. Gorman, Young I. Cho

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