Abstract

Solar energy is becoming more and more useful in the modern day life in industrial, domestic and commercial sectors, because of his cleanliness from an environmental point of view and also contributes to the reduction of greenhouse effect gases such as CO2. Exergy analysis is a thermodynamic analysis technique based on the Second Law of Thermodynamics, which provides an alternative and illuminating means of assessing and comparing processes and systems rationally and meaningfully. Exergy analysis can assist in improving and optimizing designs. In this paper, the exergy analysis of solar thermal refrigeration cyles is reviewed. A review of the research state of art of the solar absorption and adsorption refrigeration technologies is also carried out. The cycles involved in these technologies are: open, closed, continuous and intermittent cycles. An overview of mesures of merit with regard to exergy (exergetic efficiency, exergy losses, exergy improvement and exergetic coefficient of performance) is presented. Besides, an historical and chronological view is done on the development scenario of exergy analysis in the world from 1824 until 2014. The main mathematical relations for the simulation of those cycles are presented.

Highlights

  • Solar energy is becoming more and more solicited by industries in general and for houses purposes in particular

  • A thermodynamic analysis was undertaken by simulation with a FORTRAN program and the results showed that the High Pressure Generator and the evaporator were the component needing a great attention in term of exergy efficiency and exergy loss

  • This literature review discussed the exergy analysis of solar powered technologies, it’s a presentation of different refrigeration systems powered by solar energy, that is solar absorption and adsorption systems

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Summary

A Review on Exergy Analysis of Solar Refrigeration Technologies

Paiguy Armand Ngouateu Wouagfack1, *, Maurice Tenkeng , Daniel Lissouck, Réné Tchinda .

Introduction
Presentation of Solar Refrigeration Technologies
Solar Absorption Refrigeration Systems
The Intermittent Solar Absorption Refrigeration System
Solar Adsorption Refrigeration Technologies
Working Principle of Solar Adsorption Cooling Systems
The Necessity of Exergy Analysis of a System
Chronological and Statistical Works on Exergy Analysis
Mathematical Equations for Exergy Analysis
Findings
Conclusion
Full Text
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