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Heat Transfer Research

Publicado 18 números por año

ISSN Imprimir: 1064-2285

ISSN En Línea: 2162-6561

The Impact Factor measures the average number of citations received in a particular year by papers published in the journal during the two preceding years. 2017 Journal Citation Reports (Clarivate Analytics, 2018) IF: 1.7 To calculate the five year Impact Factor, citations are counted in 2017 to the previous five years and divided by the source items published in the previous five years. 2017 Journal Citation Reports (Clarivate Analytics, 2018) 5-Year IF: 1.4 The Immediacy Index is the average number of times an article is cited in the year it is published. The journal Immediacy Index indicates how quickly articles in a journal are cited. Immediacy Index: 0.6 The Eigenfactor score, developed by Jevin West and Carl Bergstrom at the University of Washington, is a rating of the total importance of a scientific journal. Journals are rated according to the number of incoming citations, with citations from highly ranked journals weighted to make a larger contribution to the eigenfactor than those from poorly ranked journals. Eigenfactor: 0.00072 The Journal Citation Indicator (JCI) is a single measurement of the field-normalized citation impact of journals in the Web of Science Core Collection across disciplines. The key words here are that the metric is normalized and cross-disciplinary. JCI: 0.43 SJR: 0.318 SNIP: 0.568 CiteScore™:: 3.5 H-Index: 28

Indexed in

Fully Developed Temperature Distribution in a Porous Saturated Duct of Elliptical Cross Section with Viscous Dissipation Effects and Entropy Generation Analysis

Volumen 36, Edición 3, 2005, pp. 237-245
DOI: 10.1615/HeatTransRes.v36.i3.70
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SINOPSIS

Entropy generation for fully developed laminar steady forced convection in a porous medium inside an elliptical passage is the subject of this study. It is assumed that the duct wall has a uniform temperature, i.e., the T boundary condition in the terminology of Kays and Crawford [Convective Heat and Mass Transfer, McGraw-Hill, Inc., 1993]. The Darcy flow model is applied. Based on a theoretical analysis, expressions are obtained for the fully developed temperature distribution, the Nusselt number, and the local entropy generation rate in terms of its two components, namely, heat transfer irreversibility and fluid flow irreversibility. Also area-weighted average of the local entropy generation is obtained.

CITADO POR
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  3. Hooman K., Gurgenci H., Merrikh A.A., Heat transfer and entropy generation optimization of forced convection in porous-saturated ducts of rectangular cross-section, International Journal of Heat and Mass Transfer, 50, 11-12, 2007. Crossref

  4. Goldstein R.J., Ibele W.E., Patankar S.V., Simon T.W., Kuehn T.H., Strykowski P.J., Tamma K.K., Heberlein J.V.R., Davidson J.H., Bischof J., Kulacki F.A., Kortshagen U., Garrick S., Srinivasan V., Ghosh K., Mittal R., Heat transfer—A review of 2005 literature, International Journal of Heat and Mass Transfer, 53, 21-22, 2010. Crossref

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  7. Haji-Sheikh A., Nield D.A., Hooman K., Heat transfer in the thermal entrance region for flow through rectangular porous passages, International Journal of Heat and Mass Transfer, 49, 17-18, 2006. Crossref

  8. Hooman K., Ejlali A., Entropy generation for forced convection in a porous saturated circular tube with uniform wall temperature, International Communications in Heat and Mass Transfer, 34, 4, 2007. Crossref

  9. Naidu V. Kesavulu, Siddheshwar P.G., Nagaraja K.V., Finite Element Solution of Darcy–Brinkman Equation for Irregular Cross-Section Flow Channel Using Curved Triangular Elements, Procedia Engineering, 127, 2015. Crossref

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  11. Yusuf TaiwoS., Oni MichaelO., Entropy generation under the influence of radial magnetic field and viscous dissipation of generalized Couette flow in an annulus, Propulsion and Power Research, 7, 4, 2018. Crossref

  12. Kesavulu Naidu V., Banerjee Dipayan, Siddheshwar P.G., Shankara , Optimal sub-parametric finite element approach for a Darcy-Brinkman fluid flow problem through a circular channel using curved triangular elements, IOP Conference Series: Materials Science and Engineering, 310, 2018. Crossref

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  15. Rooman Muhammad, Jan Muhammad Asif, Shah Zahir, Alzahrani Mohammed R., Entropy generation and nonlinear thermal radiation analysis on axisymmetric MHD Ellis nanofluid over a horizontally permeable stretching cylinder, Waves in Random and Complex Media, 2022. Crossref

  16. Ahmed Jawad, Khan Masood, Rasheed Zunaira, Ahmed Awais, Ahmed Latif, Bhandari Anupam, Entropy generation analysis for axisymmetric flow of carreau nanofluid over a horizontally stretching cylinder, Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering, 2022. Crossref

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