Details

Title

Condensation of refrigerant R407C in multiport minichannel section

Journal title

Archives of Thermodynamics

Yearbook

2016

Issue

No 4

Authors

Keywords

condensation ; minichannels ; R407C refrigerant ; heat exchanger

Divisions of PAS

Nauki Techniczne

Coverage

3-18

Publisher

The Committee of Thermodynamics and Combustion of the Polish Academy of Sciences and The Institute of Fluid-Flow Machinery Polish Academy of Sciences

Date

2016

Type

Artykuły / Articles

Identifier

DOI: 10.1515/aoter-2016-0024

Source

Archives of Thermodynamics; 2016; No 4; 3-18

References

Honda (2005), Condensation of in a horizontal microfin tube, Int J Refrig, 407. ; Silver (1947), Gas cooling with aqueous condensation, Trans Inst Chem Eng, 30. ; Shin (2004), An experimental study of condensation heat transfer inside a mini - channel with a new measurement technique Multiphase Flow, Int J, 30, 311. ; Bell (1973), An approximate generalized design method for multicomponent partial condenser AIChE Symp, Ser, 131. ; Mikielewicz (2016), Analytical model with non - adiabatic effects for pressure drop and heat transfer during boiling and condensation flows in conventional channels and minichannels Heat Transfer, Eng, 13, 1158. ; Bohdal (2011), Comparative investigations of the condensation of a and refrigerants in pipe minichannels Heat Mass Trans, Int J, 9, 134. ; Mishima (1995), Effect of inner diameter on some characteristics of airwater two - phase flow in capil lary tubes ISME, Trans, 61. ; Bohdal (2009), Investigation of the condensation process in the mini - systems of compressor refrigerating systems In COMPRESSORS, Proc Conf, 1. ; Thome (2005), Condensation in plain horizontal tubes : Recent advances in modeling of the transfer to pure fluids and mixture, J Braz Soc Mech Sci Eng, 27, 1, doi.org/10.1590/S1678-58782005000100002 ; Cavallini (2002), Del Col Heat transfer coefficient HFC refrigerants during condensation at high temperature inside a enhanced tube In Refrigeration and Air Conditioning Conf Place Uni, Proc Int, 8, 563. ; Fronk (2013), In - tube condensation of zeotropic fluid mixtures :, review Int J Refrig, 534, doi.org/10.1016/j.ijrefrig.2012.11.030 ; Lie (2008), Experimental study of evaporation pressure drop characteristics of refrigerants a and in horizontal smal l tubes Heat Mass Trans, Int J, 134. ; Zhang (2012), Experimental investigation of condensation heat transfer and pressure drop of and in mini - tubes Heat Mass Trans, Int J, 13, 22. ; Bohdal (2009), Investigation of heat exchange and flow resistances during condensation of refrigeration media in minichannels In th Technology Bremen, Proc Int Symp Research Education, 19, 118. ; Bohdal (2012), Heat transfer during condensation of refrigerants in tubular minichannels, Arch Thermodyn, 3. ; Mikielewicz (2012), Comparative study of flow condensation in conventional and smal l diameter tubes, Arch Thermodyn, 67. ; Mikielewicz (2009), Boiling and condensation in flow in the channels and minichannels Uczelniane Politechniki Gdańskiej, Wyd. ; Bohdal (2015), Empirical study of heterogeneous refrigerant condensation in pipe minichannels, Int J Refrig, 210, doi.org/10.1016/j.ijrefrig.2015.07.002

Editorial Board

International Advisory Board

J. Bataille, Ecole Central de Lyon, Ecully, France

A. Bejan, Duke University, Durham, USA

W. Blasiak, Royal Institute of Technology, Stockholm, Sweden

G. P. Celata, ENEA, Rome, Italy

L.M. Cheng, Zhejiang University, Hangzhou, China

M. Colaco, Federal University of Rio de Janeiro, Brazil

J. M. Delhaye, CEA, Grenoble, France

M. Giot, Université Catholique de Louvain, Belgium

K. Hooman, University of Queensland, Australia

D. Jackson, University of Manchester, UK

D.F. Li, Kunming University of Science and Technology, Kunming, China

K. Kuwagi, Okayama University of Science, Japan

J. P. Meyer, University of Pretoria, South Africa

S. Michaelides, Texas Christian University, Fort Worth Texas, USA

M. Moran, Ohio State University, Columbus, USA

W. Muschik, Technische Universität Berlin, Germany

I. Müller, Technische Universität Berlin, Germany

H. Nakayama, Japanese Atomic Energy Agency, Japan

A. Nenarokomov, Moscow Aviation Institute, Russia

S. Nizetic, University of Split, Croatia

H. Orlande, Federal University of Rio de Janeiro, Brazil

M. Podowski, Rensselaer Polytechnic Institute, Troy, USA

A. Rusanov, Institute for Mechanical Engineering Problems NAS, Kharkiv, Ukraine

M. R. von Spakovsky, Virginia Polytechnic Institute and State University, Blacksburg, USA

A. Vallati, Sapienza University of Rome, Italy

H.R. Yang, Tsinghua University, Beijing, China



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