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Simulation of vapour compression air conditioning system using Al2O3 based nanofluid refrigerant.

Authors :
DILAWAR, Mohammed
QAYOUM, Adnan
Source :
Journal of Thermal Engineering; Sep2023, Vol. 9 Issue 5, p1307-1323, 17p
Publication Year :
2023

Abstract

The energy crisis, Greenhouse Gas (GHG) emissions, and Chlorofluorocarbon (CFC) emissions are major environmental issues at present. It is critical to achieve and reduce emissions and energy consumption through the use of environmentally friendly refrigerants. Utilizing an environmentally friendly refrigerant such as HFC-32 may offer a viable solution to the ozone depletion potential (ODP) and global warming issues. This study examines the effects of aluminium oxide (Al<subscript>2</subscript>O<subscript>3</subscript>) nanoparticles at volume concentrations of 0.06, 0.08, 0.1, 0.12, and 0.14% in pure refrigerants such as HFC-32 and R-410a used in air-conditioning systems based on the vapour compression refrigeration cycle. The thermophysical properties of pure and nanorefrigerants have been determined using REFPROP (NIST properties of fluid Reference) and a theoretical formulation model using MATLAB software. The important outcomes of HFC-32 nanorefrigerant show the maximum performance with 0.14% alumina nano additives which results in a 46.14% increase in the coefficient of performance (COP) and massive power savings upto 31.59%. Thermal conductivity exhibited an increase with an increment in nanoparticle concentration. Maximum thermal conductivity of 0.172 W/m-K is recorded in the case of HFC-32/Al<subscript>2</subscript>O<subscript>3</subscript> nanorefrigerant with 0.14% volume concentration. The net refrigeration effect of pure refrigerants (R410a and HFC-32) is 77% and 79% and on addition of nanorefrigerants to the pure the net refrigeration effect increases to 81.2% and 83.5% for R410a and HFC-32 respectively. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
21487847
Volume :
9
Issue :
5
Database :
Complementary Index
Journal :
Journal of Thermal Engineering
Publication Type :
Academic Journal
Accession number :
173066704
Full Text :
https://doi.org/10.18186/thermal.1377210