Heat pump coefficient of conversion and power on off-nominal modes

The article considers the variation of heat pump (HP) compression parameters which define its effectiveness: power and coefficient of conversion (μ) on off-nominal modes of operation. Taking into account that the parameters of low-potential sources of heat for HP change, the demand for thermal energ...

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Main Authors: Yuriy A Antipov, Ivan K Shatalov, Irina I Shatalova, Kirill V Shkarin
Format: Article
Language:English
Published: Peoples’ Friendship University of Russia (RUDN University) 2018-12-01
Series:RUDN Journal of Engineering Researches
Subjects:
Online Access:http://journals.rudn.ru/engineering-researches/article/viewFile/19249/16100
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spelling doaj-43ebfa6dfafb4650bf980f57a39e9bdc2020-11-24T21:19:21ZengPeoples’ Friendship University of Russia (RUDN University)RUDN Journal of Engineering Researches2312-81432312-81512018-12-0119327127610.22363/2312-8143-2018-19-3-271-27616765Heat pump coefficient of conversion and power on off-nominal modesYuriy A Antipov0Ivan K Shatalov1Irina I Shatalova2Kirill V Shkarin3Peoples’ Friendship University of Russia (RUDN University)Peoples’ Friendship University of Russia (RUDN University)Peoples’ Friendship University of Russia (RUDN University)Peoples’ Friendship University of Russia (RUDN University)The article considers the variation of heat pump (HP) compression parameters which define its effectiveness: power and coefficient of conversion (μ) on off-nominal modes of operation. Taking into account that the parameters of low-potential sources of heat for HP change, the demand for thermal energy also changes; study of HP operating on off-nominal modes is relevant. To analyze the operating process on partial power modes of HP, a reciprocating compressor is used. The following options are examined by authors as conditions of HP transitioning to the off-nominal mode: change in temperature of water at the condenser inlet; change in flow rate of water passing through the condenser, change in flow rate of the working medium. Based on the analysis of relationships for determining the coefficient of conversion and power consumed by HP, it is shown that these parameters change if HP transitions to off-nominal mode. The increase of temperature entering the condenser leads to decrease in μ, and with temperature decrease μ increases. Decrease in flow rate of water cooling the condenser moves the beginning point of compression of the working medium to higher moisture region and reduces the efficiency of the compressor. Working medium flow rate decrease virtually does not affect the Carnot cycle efficiency and μ decreases because of rising moisture of gas.http://journals.rudn.ru/engineering-researches/article/viewFile/19249/16100heat pumpoff-nominal operating modereciprocating compressorcoefficient of conversion
collection DOAJ
language English
format Article
sources DOAJ
author Yuriy A Antipov
Ivan K Shatalov
Irina I Shatalova
Kirill V Shkarin
spellingShingle Yuriy A Antipov
Ivan K Shatalov
Irina I Shatalova
Kirill V Shkarin
Heat pump coefficient of conversion and power on off-nominal modes
RUDN Journal of Engineering Researches
heat pump
off-nominal operating mode
reciprocating compressor
coefficient of conversion
author_facet Yuriy A Antipov
Ivan K Shatalov
Irina I Shatalova
Kirill V Shkarin
author_sort Yuriy A Antipov
title Heat pump coefficient of conversion and power on off-nominal modes
title_short Heat pump coefficient of conversion and power on off-nominal modes
title_full Heat pump coefficient of conversion and power on off-nominal modes
title_fullStr Heat pump coefficient of conversion and power on off-nominal modes
title_full_unstemmed Heat pump coefficient of conversion and power on off-nominal modes
title_sort heat pump coefficient of conversion and power on off-nominal modes
publisher Peoples’ Friendship University of Russia (RUDN University)
series RUDN Journal of Engineering Researches
issn 2312-8143
2312-8151
publishDate 2018-12-01
description The article considers the variation of heat pump (HP) compression parameters which define its effectiveness: power and coefficient of conversion (μ) on off-nominal modes of operation. Taking into account that the parameters of low-potential sources of heat for HP change, the demand for thermal energy also changes; study of HP operating on off-nominal modes is relevant. To analyze the operating process on partial power modes of HP, a reciprocating compressor is used. The following options are examined by authors as conditions of HP transitioning to the off-nominal mode: change in temperature of water at the condenser inlet; change in flow rate of water passing through the condenser, change in flow rate of the working medium. Based on the analysis of relationships for determining the coefficient of conversion and power consumed by HP, it is shown that these parameters change if HP transitions to off-nominal mode. The increase of temperature entering the condenser leads to decrease in μ, and with temperature decrease μ increases. Decrease in flow rate of water cooling the condenser moves the beginning point of compression of the working medium to higher moisture region and reduces the efficiency of the compressor. Working medium flow rate decrease virtually does not affect the Carnot cycle efficiency and μ decreases because of rising moisture of gas.
topic heat pump
off-nominal operating mode
reciprocating compressor
coefficient of conversion
url http://journals.rudn.ru/engineering-researches/article/viewFile/19249/16100
work_keys_str_mv AT yuriyaantipov heatpumpcoefficientofconversionandpoweronoffnominalmodes
AT ivankshatalov heatpumpcoefficientofconversionandpoweronoffnominalmodes
AT irinaishatalova heatpumpcoefficientofconversionandpoweronoffnominalmodes
AT kirillvshkarin heatpumpcoefficientofconversionandpoweronoffnominalmodes
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