Přístupnostní navigace
E-application
Search Search Close
Publication detail
ASTROUSKI, I. RAUDENSKÝ, M.
Original Title
THE STUDY OF POLYMERIC HOLLOW FIBER HEAT EXCHANGERS
English Title
Type
conference paper
Language
en
Original Abstract
The polymeric hollow fiber heat exchanger (PHFHE) is a modern type of apparatus which uses polymeric fibers, with a small diameter around 1 mm, for separation of the heat transfer mediums. The main goal of this work is to study different factors which affect heat transfer in polymeric hollow fibers (diameters, length and material of fibers, liquids temperatures and velocities) and to obtain conclusions concerning hollow fiber application. The values of external, internal as well as overall heat transfer coefficient, heat transfer rate, number of transfer units (NTUs), efficiency and pressure drops were obtained for both water-water and water-air applications. The special performed Delphi-based software was prepared to accelerate the computation process.
English abstract
Keywords
Polymeric hollow fibers, heat exchanger, heat transfer.
RIV year
2012
Released
14.05.2012
Location
Svratka
ISBN
978-80-86246-40-6
Book
Engineering Mechanics 2012
Issue number
1
Pages from
47
Pages to
57
Pages count
11
URL
http://www.engmech.cz/2012/proceedings/pdf/051_Astrouski_I-FT.pdf
Documents
BibTex
@inproceedings{BUT92128, author="Ilja {Astrouski} and Miroslav {Raudenský}", title="THE STUDY OF POLYMERIC HOLLOW FIBER HEAT EXCHANGERS", annote="The polymeric hollow fiber heat exchanger (PHFHE) is a modern type of apparatus which uses polymeric fibers, with a small diameter around 1 mm, for separation of the heat transfer mediums. The main goal of this work is to study different factors which affect heat transfer in polymeric hollow fibers (diameters, length and material of fibers, liquids temperatures and velocities) and to obtain conclusions concerning hollow fiber application. The values of external, internal as well as overall heat transfer coefficient, heat transfer rate, number of transfer units (NTUs), efficiency and pressure drops were obtained for both water-water and water-air applications. The special performed Delphi-based software was prepared to accelerate the computation process.", booktitle="Engineering Mechanics 2012", chapter="92128", howpublished="electronic, physical medium", year="2012", month="may", pages="47--57", type="conference paper" }