Performance computation of window air conditioner with very low GWP near azeotropic refrigerant mixtures as a drop in Substitutes to R22

The principal objective of the present study is to compute the thermodynamic performance of window air conditioner based on standard vapour compression refrigeration cycle using R22, R407C and nineteen refrigerant mixtures. In this work nineteen R290/R1270 blends at different compositions are develo...

Full description

Bibliographic Details
Main Authors: Vali Shaik Sharmas, Setty Talanki Puttaranga, Babu Ashok
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Subjects:
COP
GWP
Online Access:https://doi.org/10.1051/matecconf/201714404007
id doaj-a8cd11b18a27468d832052dfc5aa0515
record_format Article
spelling doaj-a8cd11b18a27468d832052dfc5aa05152021-02-02T04:36:29ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011440400710.1051/matecconf/201714404007matecconf_rimes2017_04007Performance computation of window air conditioner with very low GWP near azeotropic refrigerant mixtures as a drop in Substitutes to R22Vali Shaik SharmasSetty Talanki PuttarangaBabu AshokThe principal objective of the present study is to compute the thermodynamic performance of window air conditioner based on standard vapour compression refrigeration cycle using R22, R407C and nineteen refrigerant mixtures. In this work nineteen R290/R1270 blends at different compositions are developed. A MATLAB code is developed to compute the thermodynamic performance parameters of all the studied refrigerants at condensing and evaporating temperatures of 54.4°C and 7.2°C respectively. The performance parameters are cooling effect, compressor work, COP, compressor discharge temperature, power per ton of refrigeration and volumetric cooling capacity respectively. Analytical results revealed that COP of new binary mixture R290/R1270 (90/10 by mass %) is 2.82% higher among R22, R407C and nineteen studied refrigerants. Energy required by the compressor per ton of refrigeration for R290/R1270 (90/10 by mass %) is 2.73% lower among R22, R407C and nineteen studied fluids. The discharge temperature of the compressor for all the nineteen investigated blends are reduced by 6.0-8.9oC compared to R22. Overall thermodynamic performance of window air conditioner with R290/R1270 (90/10 by mass %) is better than R22 with significant savings in energy consumption and hence it is an energy efficient ecofriendly refrigerant mixture as a drop in substitute to R22.https://doi.org/10.1051/matecconf/201714404007COPDischarge temperatureGWPEcofriendlyEnergy savingsR290/R1270 blends
collection DOAJ
language English
format Article
sources DOAJ
author Vali Shaik Sharmas
Setty Talanki Puttaranga
Babu Ashok
spellingShingle Vali Shaik Sharmas
Setty Talanki Puttaranga
Babu Ashok
Performance computation of window air conditioner with very low GWP near azeotropic refrigerant mixtures as a drop in Substitutes to R22
MATEC Web of Conferences
COP
Discharge temperature
GWP
Ecofriendly
Energy savings
R290/R1270 blends
author_facet Vali Shaik Sharmas
Setty Talanki Puttaranga
Babu Ashok
author_sort Vali Shaik Sharmas
title Performance computation of window air conditioner with very low GWP near azeotropic refrigerant mixtures as a drop in Substitutes to R22
title_short Performance computation of window air conditioner with very low GWP near azeotropic refrigerant mixtures as a drop in Substitutes to R22
title_full Performance computation of window air conditioner with very low GWP near azeotropic refrigerant mixtures as a drop in Substitutes to R22
title_fullStr Performance computation of window air conditioner with very low GWP near azeotropic refrigerant mixtures as a drop in Substitutes to R22
title_full_unstemmed Performance computation of window air conditioner with very low GWP near azeotropic refrigerant mixtures as a drop in Substitutes to R22
title_sort performance computation of window air conditioner with very low gwp near azeotropic refrigerant mixtures as a drop in substitutes to r22
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description The principal objective of the present study is to compute the thermodynamic performance of window air conditioner based on standard vapour compression refrigeration cycle using R22, R407C and nineteen refrigerant mixtures. In this work nineteen R290/R1270 blends at different compositions are developed. A MATLAB code is developed to compute the thermodynamic performance parameters of all the studied refrigerants at condensing and evaporating temperatures of 54.4°C and 7.2°C respectively. The performance parameters are cooling effect, compressor work, COP, compressor discharge temperature, power per ton of refrigeration and volumetric cooling capacity respectively. Analytical results revealed that COP of new binary mixture R290/R1270 (90/10 by mass %) is 2.82% higher among R22, R407C and nineteen studied refrigerants. Energy required by the compressor per ton of refrigeration for R290/R1270 (90/10 by mass %) is 2.73% lower among R22, R407C and nineteen studied fluids. The discharge temperature of the compressor for all the nineteen investigated blends are reduced by 6.0-8.9oC compared to R22. Overall thermodynamic performance of window air conditioner with R290/R1270 (90/10 by mass %) is better than R22 with significant savings in energy consumption and hence it is an energy efficient ecofriendly refrigerant mixture as a drop in substitute to R22.
topic COP
Discharge temperature
GWP
Ecofriendly
Energy savings
R290/R1270 blends
url https://doi.org/10.1051/matecconf/201714404007
work_keys_str_mv AT valishaiksharmas performancecomputationofwindowairconditionerwithverylowgwpnearazeotropicrefrigerantmixturesasadropinsubstitutestor22
AT settytalankiputtaranga performancecomputationofwindowairconditionerwithverylowgwpnearazeotropicrefrigerantmixturesasadropinsubstitutestor22
AT babuashok performancecomputationofwindowairconditionerwithverylowgwpnearazeotropicrefrigerantmixturesasadropinsubstitutestor22
_version_ 1724305408342884352