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Articles

Experimental investigation of solar air heater duct with discrete V-rib integrated with staggered elements

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Pages 162-171 | Received 29 Jun 2019, Accepted 26 Feb 2020, Published online: 10 Mar 2020

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Jitendra Singh & Atul Lanjewar. (2023) Effect of physiognomic behaviour of symmetrical arc rib roughness having gaps and staggered rib on the thermal performance of solar air heater. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 45:1, pages 1030-1047.
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Articles from other publishers (8)

Vijayakumar Rajendran, Muthuraman Ponrajan Vikram, Sung Chul Kim, Paride Gullo, Abdullah Alodhayb, Saravanan Pandiaraj & Rajendran Prabakaran. (2023) Enhancing the performance of a solar air heater by employing the broken V-shaped ribs. Environmental Science and Pollution Research 30:31, pages 77807-77818.
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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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Hwi-Ung Choi, Kwang-Am Moon, Seong-Bhin Kim & Kwang-Hwan Choi. (2023) CFD Analysis of the Heat Transfer and Fluid Flow Characteristics Using the Rectangular Rib Attached to the Fin Surface in a Solar Air Heater. Sustainability 15:6, pages 5382.
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Vijayakumar Rajendran, Karthik Singaraj & Jayavenkatesh Rajarathinam. (2022) Environmental, economic, and performance assessment of solar air heater with inclined and winglet baffle. Environmental Science and Pollution Research 30:6, pages 14337-14352.
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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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Shreyas P. Shetty, N. Madhwesh & K. Vasudeva Karanth. (2021) Numerical analysis of a solar air heater with circular perforated absorber plate. Solar Energy 215, pages 416-433.
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