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Performance Analysis of Solar Thermal Flat Plate Collector using Different Heat Transfer Fluids

Jeena John , Victor Jose
Department of Electrical and Electronics Engineering, Amal Jyothi College of Engineering Kanjirapally, Kottayam, Kerala, India
Vol. 2, Issue 11 pp. 67-73 🌐 Open Access

ABSTRACT

One of the major concern in the Indian energy sector are energy use and energy security and these two factors are greatly inter related too. Renewable energy sector contributes a lot to sustainable development technologies in which the ability of the future generation to meet their own needs are not affected by meeting the needs of present generation. The drastic increase in energy demand and related environmental issues have encouraged a lot of researchers for searching an alternative option to render the future energy demand. Since solar energy is clean, abundantly available and inexhaustible in nature, it is an interesting option among the renewable energy technologies. Nowadays, solar thermal technologies are the most popular due to ease of application, high conversion factors and economic viability. The performance of solar thermal technology is dependent on certain factors such as heat transfer fluids like water, air, antifreezes like ethylene glycol, propylene glycol, hydrocarbon oils etc., solar radiation, collector tilt, etc. The efficiency of a solar thermal system depends on the outlet temperature obtained using each of the heat transfer fluids. In this context, their performance analysis holds a greater importance. In this thesis work, a performance analysis on the flat plate collector system using different heat transfer fluids were done and compared. The experiment was conducted using varying concentrations of water and heat transfer fluid mixtures.

Keywords: Ethylene glycol, heat exchanger, heat transfer fluid, heat transport, propylene glycol, solar thermal system, thermal efficiency

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Vol. 9 | Issue 12 | December