Approximate Representation and Exposition of ISI Flat Plate Collector including Revised Flat Plate Collector : A Review

Author:

Sambhe Rajeshkumar U.1,Gaddamwar Sagar S.2

Affiliation:

1. Professor and Head (Mechanical Engineering), Jawaharlal Darda Institute of Engineering and Technology, Yavatmal, Maharashtra, India

2. Assistant Professor (Mechanical Engineering), Jawaharlal Darda Institute of Engineering and Technology, Yavatmal, Maharashtra, India

Abstract

Cosmic power is one of the numerous renewable energy sources that can use in a Photovoltaic (PV) system or Thermal. Solar collectors play a crucial role in solar thermal systems. They convert solar radiation into heat and transfer the heat to working fluids Such as water or air. The Flat-plate collectors are the numerous common type of solar collectors and typically used as a water heater or air heater. These collectors have low efficiency and low outlet temperature. Recently, many scientists have attempted to improve the efficiency and performance of flat-plate collectors via different methods. This review paper describes the results of the experimentation carried out to study and compare the performance of the modified flat plate collector having increasing riser tube diameter and reducing riser tube length with the conventional ISI marked solar liquid flat plate collector. To study, the comparative performance characteristics of a modified flat plate collector with ISI flat plate collector operated under natural circulation mode. The suggested design found to be better than the existing ISI design of the absorber plate from an efficiency point of view. The actual useful heat gain (Qu) in the suggested design understudy found to be more by 30% than that in the case of ISI collector. However, the modified flat plate collector found to operate at a relatively lower exit temperature than the conventional ISI marked collector.

Publisher

Technoscience Academy

Subject

General Medicine

Reference19 articles.

1. Raj Thundil Karuppa R., Pavan P. and Reddy Rajeev D.(2012), “Experimental Investigation of a New Solar Flat Plate Collector”, Research Journal of Engineering Sciences, ISSN 2278 – 9472, Vol. 1(4), pp.1-8.

2. Dr. Karima E. Amori and Nooraddin Saad Jabouri (2012), “Thermal Improvement Of Solar Hot Water System Using Accelerated Riser In Flat Plate Collector” The Iraqi Journal For Mechanical And Material Engineering, Special Issue (B), ISSN 1726-6742, Vol 9, No 1, pp.244-257.

3. Fatigun A.T., Adesakin G.E, Gwani M.,(2012) “Experimental determination of the effect of tube spacing on the performance of a flat plate solar collector” International Journal Of Environmental Sciences, ISSN 0976 – 4402, Volume 3, No 1, pp. 363-370.

4. Dr. S. V. Prayagi, Dr. S. B. Thombre (2011), “Parametric Studies on Buoyancy Induced Flow through Circular Pipes in Solar water heating system”, International Journal of Engineering Science and Technology (IJEST), ISSN : 0975-5462, Vol. 3 No. 1 Jan 2011, pp. 616-627.

5. Nandurkar, Y.Y. and Shelke R.S. (2012), “Performance and analysis of ISI flat plate collector with modified flat plate collector” International Journal of Engineering Science and Technology, ISSN 2319-1163, Vol-4, pp. 944-946.

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