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Fractal branch-like fractal shell-and-tube heat exchangers: A CFD study of the shell side performance
Author(s) -
Niall Foster,
Daniel SebastiaSaez,
Harvey ArellanoGarcía
Publication year - 2019
Publication title -
ifac-papersonline
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.308
H-Index - 72
eISSN - 2405-8971
pISSN - 2405-8963
DOI - 10.1016/j.ifacol.2019.06.044
Subject(s) - shell and tube heat exchanger , heat exchanger , fractal , computational fluid dynamics , mechanics , pressure drop , shell (structure) , mechanical engineering , tube (container) , materials science , engineering , mathematics , physics , mathematical analysis
Nature has provided some of the most ingenious and elegant solutions to complex problems over millions of years of refining through evolution. The adaptation of Nature´s solutions to engineering problems is a recent trend which has opened opportunities for improvement in many areas ranging from Architecture to Chemical Engineering. In particular, the use of fractal geometries on heat exchangers is a recent design trend. Recent investigations highlight the benefit of implementing fractal-based geometries on the tube side of shell and tube heat exchangers. A complete evaluation of such devices by assessing the performance of the shell side has not been undertaken, though. Here, we present a systematic numerical assessment of the shell side of a tree-like shaped heat exchanger. Key performance parameters, i.e. temperature change, pressure drop and coefficient of performance, are obtained and compared to those of a straight tube, in order to fully understand the potential of the application of fractal-based shapes to the design of heat exchangers.

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