Performance Analysis of Solar Still by Using Octagonal-Pyramid Shape in the Solar Desalination Techniques

Author:

Singh Bipin Kumar1,Ramji C.2,Ganeshan P.1,Mohanavel V.345,Balasundaram T.6,Kumar V. Vignesh7,Balasubramanian B.8,Ramshankar P.9,Ramesh Adireddy10,Thanappan Subash11ORCID

Affiliation:

1. Department of Mechanical Engineering, Sri Eshwar College of Engineering, Coimbatore, 641202 Tamil Nadu, India

2. Department of Rubber and Plastic Technology, MIT Campus, Anna University, Chennai, 600 025 Tamil Nadu, India

3. Centre for Materials Engineering and Regenerative Medicine, Bharath Institute of Higher Education and Research, Chennai-600073, Tamil Nadu, India

4. Department of Mechanical Engineering, Chandigarh University, Chandigarh, Mohali-140413, Punjab, India

5. Department of Mechanical Engineering, School of Technology, Glocal University, Delhi-Yamunotri Marg, Uttar Pradesh 247121, India

6. Department of Mechanical Engineering, Medak College of Engineering and Technology, Siddipet, Telangana, India

7. Department of Mechanical Engineering, St. Joseph College of Engineering, Chennai, Tamil Nadu, India

8. Department of Mechanical Engineering, Chettinad College of Engineering and Technology, Karur, 639114 Tamil Nadu, India

9. Department of Civil Engineering, University College of Engineering, Dindgul-624622, India

10. Department of Electrical and Electronics Engineering, Aditya College of Engineering, Surampalem 533437, Andhra Pradesh, India

11. Department of Civil Engineering, Ambo University, Ambo, Ethiopia

Abstract

This research work explored and compared the experimental performance of a solar still having novel octagonal-pyramid shape with a single slope solar still. It is found that the novel still provides twice distillation compared with conventional still. The experiments also evaluated the desalination productivity of octagonal-pyramid solar still by varying the depth of saline water inside the basin and angle of inclination of glass cover. It is observed that the optimum condition for high distillation is obtained when depth of water inside the basin is 5 cm with angle of inclination of glass cover which is 30°. Four types of water, i.e., underground borewell water, sea water, leather industry effluent, and plastic industry effluent were also used to see the effect on distillation. Results showed that underground borewell water provides high distillation due to low density. Furthermore, the performance of the octagonal-pyramid solar still is enhanced by adding different latent heat and sensible heat materials in the octagonal-pyramid solar still. Hence, the addition of brick to the octagonal-pyramid still yields the highest productivity compared to incorporation of paraffin wax. Hence, it can be concluded that the octagonal design of the solar still has shown an increased productivity when compared to a single slope solar still (conventional still) under all the conditions.

Publisher

Hindawi Limited

Subject

General Materials Science,Renewable Energy, Sustainability and the Environment,Atomic and Molecular Physics, and Optics,General Chemistry

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