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Parametric analysis on the performance of a revolutionary rotary Ericsson heat pump/engine
Authors
Andrew Cunningham
BSRIA (Building Services Research and Information Association)
+15 more
Carlsen
Cengel
Chris Benson
Hugenroth
Hugenroth
Kaushik
Kaushik
Kim
Kussul
Saffa Riffat
Samira
Toure
Tyagi
Wenbin Zhang
Wojewoda
Publication date
1 March 2019
Publisher
'Oxford University Press (OUP)'
Doi
Abstract
© The Author(s) 2018. Published by Oxford University Press. This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.A revolutionary mechanical heat pump/engine system utilizing the Ericsson thermodynamic cycle has been proposed to provide efficient and environmentally friendly cooling. Computer simulation models have been developed to simulate the rotor positions. Further modelling has been conducted to predict the torque and power of the rotary Ericsson heat pump (REHP). Parametric and optimization study has been conducted to evaluate the factors affecting the mechanical and thermal performance of the conceptually designed REHP. It has been found that the rotor size, compression ratio and base pressure are the factors determining the maximum torque and power of the MG.Peer reviewedFinal Published versio
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Nottingham Trent Institutional Repository (IRep)
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oai:irep.ntu.ac.uk:47367
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Crossref
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University of Hertfordshire Research Archive
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oai:uhra.herts.ac.uk:7549
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