Condensation of R-134a vapour over single horizontal integral-fin tubes: effect of fin height
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Building and Construction
Reference18 articles.
1. Condensation inside and outside smooth and enhanced tubes—a review of recent research;Cavallini;Int J Refrigeration,2003
2. Condensation heat transfer coefficient of R22, R407C, and R410A on a horizontal plain, low fin and turbo-C tubes;Jung;Int J Refrigeration,2003
3. Condensation of downward-flowing HFC134a in a staggered bundle of horizontal finned tubes: effect of fin geometry;Honda;Int J Refrigeration,2003
4. Experimental measurements for condensation of dowmward-flowing R123/R134a in a staggered bundle of horizontal low-finned tubes with four geometries;Honda;Int J Refrigeration,1999
5. Condensation heat transfer of a pure fluid and binary mixture outside a bundle of smooth horizontal tubes comparison of experimental results and a classical model;Belghazi;Int J Refrigeration,2001
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2. Optimization of Condensation Heat Transfer on enhanced and integral fin tubes by Functionalized-Graphene Layers;Heat and Mass Transfer;2022-05-12
3. Improvement The Heat dissipation By Using Different Integral Finned Tubes For Cross Flow Heat Exchanger;2021 International Conference on Advance of Sustainable Engineering and its Application (ICASEA);2021-10-27
4. AN OVERVIEW OF RECENT PROGRESS IN CONDENSATION HEAT TRANSFER ENHANCEMENT ACROSS HORIZONTAL TUBES AND THE TUBE BUNDLE;Journal of Thermal Engineering;2020-12-10
5. Experimental investigation of vapor condensation of R-600a over horizontal three-dimensional integral-fin tubes;International Journal of Thermal Sciences;2020-07
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