Hussein A. Al Khiro
Energy and Exergy Performance Analysis of Solar-Assisted Thermo-Mechanical Vapor Compression Cooling System
A. Al Khiro, Hussein; Boukhanouf, Rabah
Abstract
Air conditioning is vital for indoor comfort but traditionally relies on vapor compression systems, which raise electricity demand and carbon emissions. This study presents a novel thermo-mechanical vapor compression system that integrates an ejector with a conventional vapor compression cycle, incorporating a thermally driven second-stage compressor powered by solar energy. The goal is to reduce electricity consumption and enhance sustainability by leveraging renewable energy. A MATLAB® model was developed to analyze the energy and exergy performance using R1234yf refrigerant under steady-state conditions. This study compares four solar collectors—evacuated flat plate (EFPC), evacuated tube (ETC), basic flat plate (FPC), and compound parabolic (CPC) collectors—to identify the optimal configuration based on the collector area and costs. The results show a 31% reduction in mechanical compressor energy use and up to a 44% improvement in the coefficient of performance (COP) compared to conventional systems, with a condenser temperature of 65 °C, a thermal compression ratio of 0.8, and a heat source temperature of 150 °C. The evacuated flat plate collectors performed best, requiring 2 m2/kW of cooling capacity with a maximum exergy efficiency of 15% at 170 °C, while compound parabolic collectors offered the lowest initial costs. Overall, the proposed system shows significant potential for reducing energy costs and carbon emissions, particularly in hot climates.
Citation
A. Al Khiro, H., & Boukhanouf, R. (2024). Energy and Exergy Performance Analysis of Solar-Assisted Thermo-Mechanical Vapor Compression Cooling System. Sustainability, 16(19), Article 8625. https://doi.org/10.3390/su16198625
Journal Article Type | Article |
---|---|
Acceptance Date | Oct 3, 2024 |
Online Publication Date | Oct 4, 2024 |
Publication Date | Oct 1, 2024 |
Deposit Date | Dec 14, 2024 |
Publicly Available Date | Dec 18, 2024 |
Journal | Sustainability |
Electronic ISSN | 2071-1050 |
Publisher | MDPI |
Peer Reviewed | Peer Reviewed |
Volume | 16 |
Issue | 19 |
Article Number | 8625 |
DOI | https://doi.org/10.3390/su16198625 |
Public URL | https://nottingham-repository.worktribe.com/output/40295157 |
Publisher URL | https://www.mdpi.com/2071-1050/16/19/8625 |
Files
sustainability-16-08625-v2
(8.4 Mb)
PDF
Publisher Licence URL
https://creativecommons.org/licenses/by/4.0/
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