Mathematical Model for Energy and Exergy-Based Simulation of Triangular Solar Energy Extractor for Air Heating Applications

Author:

Ramesh C.1,Vijayakumar M.2,Jeyanthi L.3,Rupesh P. L.4,Kanchana A.5,Jyothi Sankar P. R.6,Sajith V. S.7,Munjal Neha8,Birhanu Habtewolde Ababu9ORCID

Affiliation:

1. Department of Mechanical Engineering, KIT-KalaignarKarunanidhi Institute of Technology, Coimbatore 641402, Tamilnadu, India

2. Department of Mechanical Engineering, PSN College of Engineering and Technology, Tirunelveli 627152, Tamilnadu, India

3. Department of Mathematics, Panimalar Engineering College, Chennai 600123, Tamilnadu, India

4. Department of Mechanical Engineering, Vel Tech Rangarajan Dr Sagunthala R&D Institute of Science and Technology, Chennai 600062, Tamilnadu, India

5. Department of Mathematics, Rajalakshmi Institute of Technology, Chennai 600124, Tamilnadu, India

6. Department of Mechanical Engineering, NSS College of Engineering, Palakkad 678008, Kerala, India

7. Department of Mathematics, NSS College of Engineering, Palakkad 678008, Kerala, India

8. Department of Physics, Lovely Professional University, Phagwara 144411, Punjab, India

9. Faculty of Mechanical Engineering, Arba Minch Institute of Technology, Arba Minch University, P.O. Box 21, Arba Minch, Ethiopia

Abstract

In the present work, the thermal and exergy efficiency of the equilateral triangular duct solar air heater is analytically investigated and its performance is improved by attaching an inclined wire rib over the absorber surface. Using triangular ducts improves the operating flow conditions up to the Reynolds number of 35000. The thermal model of solar air heater is solved by using an iterative procedure by code developed in MATLAB. The analysis considers the roughness parameters that roughness pitch (P)-to-height (e) ratio (P/e) of 4 to 16, roughness height (e)-to-hydraulic diameter (Dh) ratio (e/Dh) of 0.021 to 0.043, and rib inclination angle (α) of 30 to 75°. While increasing the Reynolds number from 2000 to 35000, the inclined rib roughened triangular duct solar air heater thermal performance is increased and attains the maximum value of 83.61% and the effective thermal efficiency of 80.26%. The maximum exergy efficiency of 2.62% is obtained at the Reynolds number value of 1864. It improves the thermal performance by 14.2% as compared with the rectangular rib roughened triangular duct solar air heater. The optimum value of roughness parameters is P/e of 12, e/D of 0.042, and α of 75°. The air heater is useable to attain the temperature rise parameter ranges from 0.001 to 0.03 K·m2/W.

Publisher

Hindawi Limited

Subject

General Engineering,General Mathematics

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