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Research Article

Heat transfer augmentation using multiple gaps in arc-shaped ribs roughened solar air heater: an experimental study

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Pages 3345-3356 | Received 19 Jan 2019, Accepted 07 Apr 2019, Published online: 21 Apr 2019

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Read on this site (5)

Sushant Thakur & N.S. Thakur. (2023) Investigational analysis of roughened solar air heater channel having W-shaped ribs with symmetrical gaps along with staggered ribs. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 45:3, pages 7389-7404.
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Amitesh Sharma, Sushant Thakur & Prashant Dhiman. (2022) Jet impingement in a V-rib roughened solar air heater: an experimental approach. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 44:3, pages 6970-6984.
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Sanjeev Kumar Yadav & Atul Lanjewar. (2022) Comprehensive thermo-fluid analysis of staggered rib arc roughness in single pass solar air heater duct. International Journal of Green Energy 19:9, pages 986-1004.
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Mohammed Fowzi Mohammed, Muhammad Asmail Eleiwi & Kamil Talib Kamil. (2021) Experimental Investigation of Thermal Performance of Improvement a Solar Air Heater With Metallic Fiber. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 43:18, pages 2319-2338.
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Sudhir Kumar & Suresh Kant Verma. (2020) Three-dimensional simulation and experimental validation of solar air heater having sinusoidal rib. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 0:0, pages 1-19.
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Articles from other publishers (12)

Sanjeev Kumar Yadav & Atul Lanjewar. (2022) Experimental analysis of solar air heater duct with discrete arc-pattern combined staggered element roughness on absorber plate. Environment, Development and Sustainability 25:8, pages 8651-8675.
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Shuchi Chaurasia, Varun Goel & Ajoy Debbarma. (2023) Impact of hybrid roughness geometry on heat transfer augmentation in solar air heater: A review. Solar Energy 255, pages 435-459.
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Sheetal Kumar Jain, Rohit Misra & Ghanshyam Das Agrawal. (2022) Experimental Investigation and Optimizing the Parameters of a Solar Air Heater Having Broken Arc-Shaped Ribs Using Hybrid Entropy-VIKOR Technique. Journal of Solar Energy Engineering 144:6.
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Anil Singh Yadav, Tabish Alam, Gaurav Gupta, Rajiv Saxena, Naveen Kumar Gupta, K. Viswanath Allamraju, Rahul Kumar, Neeraj Sharma, Abhishek Sharma, Utkarsh Pandey & Yogesh Agrawal. (2022) A Numerical Investigation of an Artificially Roughened Solar Air Heater. Energies 15:21, pages 8045.
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Hiwa Abdlla Maarof & Mohammad Shamsi. (2022) Combining Thermal and Optical Modeling to Optimize the Performance of a Flat Plate Absorber at Various Locations in a Solar Air Collector. Journal of Studies in Science and Engineering 2:3, pages 31-51.
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Aruna Kumar Behura, Chinmaya Prasad Mohanty, Manas Ranjan Singh, Ashwini Kumar, Emanoil Linul & Dipen Kumar Rajak. (2022) Performance Analysis of Three Side Roughened Solar Air Heater: A Preliminary Investigation. Materials 15:7, pages 2541.
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Mayank Kumar Dwivedi & Manish Choudhary. (2022) Effect of various rib geometries on the heat transfer and friction characteristics of solar air heater: A Review. Materials Today: Proceedings 63, pages 272-282.
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Anil Singh Yadav, Abhay Agrawal, Abhishek Sharma & Abhay Gupta. (2022) Revisiting the effect of ribs on performance of solar air heater using CFD approach. Materials Today: Proceedings 63, pages 240-252.
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Anil Singh Yadav, Abhay Agrawal, Abhishek Sharma, Sachin Sharma, Rajesh Maithani & Anil Kumar. (2022) Augmented artificially roughened solar air heaters. Materials Today: Proceedings 63, pages 226-239.
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Sanjeev Kumar Yadav. (2022) Thermal Performance Evaluation of Arc Rib Having Symmetrical Wide Gaps and Staggered Elements and Additional Narrow Gap in Each Arc Segment Used in Absorber Surface of Solar Air Heater. Applied Solar Energy 57:3, pages 192-197.
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Ayush Jain, Sheetal Kumar Jain, Ghanshyam Das Agrawal & Rohit Misra. 2021. Fluid Mechanics and Fluid Power. Fluid Mechanics and Fluid Power 779 785 .
Sheetal Kumar Jain, Rohit Misra & Ghanshyam Das Agrawal. (2019) Effect of gap width on thermal performance of solar air heater having arc-shaped ribs with symmetrical gaps: an experimental investigation. Environment, Development and Sustainability 22:7, pages 6563-6583.
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