Experimental Analysis of Solar Dryer

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Year : May 16, 2024 at 2:09 pm | [if 1553 equals=””] Volume :11 [else] Volume :11[/if 1553] | [if 424 equals=”Regular Issue”]Issue[/if 424][if 424 equals=”Special Issue”]Special Issue[/if 424] [if 424 equals=”Conference”][/if 424] : 01 | Page : 9-17

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Sharanabasappa C Sajjan, Basavaraj H, Mathew P. Anthony, Vinay Angadi, Rajesh B

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  1. Professor, Student, Student, Student, Student Department of Mechanical Engineering, KLE Institute of Technology, Hubli, Department of Mechanical Engineering, KLE Institute of Technology, Hubli, Department of Mechanical Engineering, KLE Institute of Technology, Hubli, Department of Mechanical Engineering, KLE Institute of Technology, Hubli, Department of Mechanical Engineering, KLE Institute of Technology, Hubli Karnatak, Karnatak, Karnatak, Karnatak, Karnatak India, India, India, India, India
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Abstract

nAgro-commodities are most commonly dried in open air. For easy usage, low cost dryer in clear and rainy day was the need by many farmers. Present study was intended to study, fabricate and test the solar dryer for drying fruits and vegetables. A model was designed for drying chillies and potatoes by direct solar energy in line with auxiliary drying chamber. Proposed method of drying is comparatively fast and clean. Dried chilli and potatoes may be directly used. Performance analysis is carried out for the developed model, results were satisfactory.

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Keywords: Solar dryer, agriculture products, solar dryer, absorber plate, toughened glass, baffles, exhaust pipe, drying cabinet

n[if 424 equals=”Regular Issue”][This article belongs to Journal of Refrigeration, Air conditioning, Heating and ventilation(jorachv)]

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[/if 424][if 424 equals=”Special Issue”][This article belongs to Special Issue under section in Journal of Refrigeration, Air conditioning, Heating and ventilation(jorachv)][/if 424][if 424 equals=”Conference”]This article belongs to Conference [/if 424]

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How to cite this article: Sharanabasappa C Sajjan, Basavaraj H, Mathew P. Anthony, Vinay Angadi, Rajesh B. Experimental Analysis of Solar Dryer. Journal of Refrigeration, Air conditioning, Heating and ventilation. May 16, 2024; 11(01):9-17.

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How to cite this URL: Sharanabasappa C Sajjan, Basavaraj H, Mathew P. Anthony, Vinay Angadi, Rajesh B. Experimental Analysis of Solar Dryer. Journal of Refrigeration, Air conditioning, Heating and ventilation. May 16, 2024; 11(01):9-17. Available from: https://journals.stmjournals.com/jorachv/article=May 16, 2024/view=0

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References

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  1. Pujar, Hanumesha and C. Sajjan, Sharanabasappa, “Design and Fabrication of Solar Paraboloid Concentrator” 2nd International Conference on Non-Conventional Energy: Nanotechnology & Nanomaterials for Energy & Environment (ICNNEE) 2019.
  2. Sushrut Halewadimath, Prajwal Subbhapurmath, Naveen Havaldar, Karthik Hunashikatti, Siddharth Gokhale, “Experimental Analysis of Solar Air Dryer for Agricultural Products”, International Research Journal of Engineering and Technology. 2(3) (2015) 1517-1523.
  3. Papade & Boda, “Design & Development of Indirect Type Solar Dryer with Energy Storing Material”, International Journal of Innovative Research in Advanced Engineering. 1(12) (2014) 109-114.
  4. Pankaj Gupta, “Air flow investigations indirect type solar food dryer using computational fluid dynamics, Carbon – Science and Technology”. (2015) 9-16.
  5. SuhaimiMisha, Sohif Mat, MohdHafidzRuslan, Elias Salleh, KamaruzzamanSopian, “A Study of Drying Uniformity in a New Design of Tray Dryer”, Journal of Advanced Research in Fluid Mechanics and Thermal Sciences. 2 (2018) 129-138.
  6. Salve, Fulambarkar, Khune, “Solar Drying System Integrated with Phase Change Material (PCM)”, International Journal of Engineering and Advanced Technology. 9(3) (2020) 1897- 1902.
  7. A. El-Sebaii et.al “Solar drying of agricultural products: A review”, Renewable and Sustainable Energy Reviews (ELSEVIER), King Abdulaziz University, Saudi Arabia 2011.
  8. Arvind Kumar Singh et.al “Experimental Analysis on Solar Air Dryer”, International Journal of Engineering, Management & Sciences (IJEMS) 2014.

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[if 424 not_equal=””]Regular Issue[else]Published[/if 424] Subscription Review Article

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Volume 11
[if 424 equals=”Regular Issue”]Issue[/if 424][if 424 equals=”Special Issue”]Special Issue[/if 424] [if 424 equals=”Conference”][/if 424] 01
Received April 4, 2024
Accepted April 20, 2024
Published May 16, 2024

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