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Journal of Enhanced Heat Transfer

Publicado 8 números por año

ISSN Imprimir: 1065-5131

ISSN En Línea: 1563-5074

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: 2.3 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: 1.8 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: 0.2 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: 0.00037 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: 0.6 SJR: 0.433 SNIP: 0.593 CiteScore™:: 4.3 H-Index: 35

Indexed in

Characteristics of a Plate-Fin Heat Exchanger with Phase Change Materials

Volumen 2, Edición 4, 1995, pp. 273-281
DOI: 10.1615/JEnhHeatTransf.v2.i4.30
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SINOPSIS

A single-pass cross-flow heat exchanger with both fluids (air) unmixed, in which one or two kinds of phase change materials (PCM) were enclosed, was studied experimentally and analytically. This heat exchanger provides thermal energy storage and can be used to recover waste heat. Four kinds of heat exchangers were tested: The one with no PCM, others with lower melting point PCM and higher melting point PCM, one with both PCMs. Three kinds of experiments − steady, transient, and periodic experiments − were performed. A numerical analysis was carried out for periodic operation. From these results the characteristics of each heat exchanger were determined and suitable operating conditions were found.

CITADO POR
  1. El Qarnia Hamid, Theoretical study of transient response of a rectangular latent heat thermal energy storage system with conjugate forced convection, Energy Conversion and Management, 45, 9-10, 2004. Crossref

  2. El Qarnia H., Lacroix M., Mercadier Y., Use of a phase change material to prevent frosting in a compact crossflow air exchanger, Energy Conversion and Management, 42, 10, 2001. Crossref

  3. Turnpenny J.R., Etheridge D.W., Reay D.A., Novel ventilation cooling system for reducing air conditioning in buildings., Applied Thermal Engineering, 20, 11, 2000. Crossref

  4. Eckert E.r.g, Goldstein R.J, Ibele W.e, Patankar S.V, Simon T.W, Strykowski P.J, Tamma K.K, Kuehn T.H, Bar-Cohen A, Heberlein J.V.R, Davidson J.H, Bischof J, Kulacki F, Kortshagen U, Heat transfer—a review of 1995 literature, International Journal of Heat and Mass Transfer, 42, 15, 1999. Crossref

  5. Borcuch Marcin, Musiał Michał, Sztekler Karol, Kalawa Wojciech, Gumuła Stanisław, Stefański Sebastian, Dančová P., The influence of flow modification on air and PCM temperatures in an accumulative heat exchanger, EPJ Web of Conferences, 180, 2018. Crossref

  6. Mansour M Khamis, Effect of natural convection on conjugate heat transfer characteristics in liquid minichannel during phase change material melting, Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science, 228, 3, 2014. Crossref

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