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Experimental Heat Transfer
A Journal of Thermal Energy Generation, Transport, Storage, and Conversion
Volume 35, 2022 - Issue 4
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Research Article

Experimental investigation for heat and flow characteristics of solar air heater having symmetrical gaps in multiple-arc rib pattern as roughness elements

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Pages 466-483 | Received 06 Jan 2021, Accepted 15 Mar 2021, Published online: 25 Apr 2021

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Read on this site (8)

Zoheir Saboohi, Fathollah Ommi, Ebrahim Rahmani, Tofigh Moradi, Abolfazl Fattahi, Mostafa Delpisheh & Nader Karimi. (2023) The effect of sinusoidal fins’ amplitude on the thermo-hydraulic performance of a solar air heater. Chemical Engineering Communications 210:5, pages 773-787.
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Varun Pratap Singh, Siddharth Jain & JML Gupta. (2023) Analysis of the effect of perforation in multi-v rib artificial roughened single pass solar air heater: - Part A. Experimental Heat Transfer 36:2, pages 163-182.
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Naveen Kumar Gupta, Tabish Alam & Himanshu Singh. (2022) An Experimental Study of Thermohydraulic Performance of Solar Air Heater Having Multiple Open Trapezoidal Rib Roughnesses. Experimental Heat Transfer 0:0, pages 1-21.
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Himanshu Singh, Tabish Alam, Md Irfanul Haque Siddiqui, Masood Ashraf Ali & Dheeraj Sagar. (2022) Experimental investigation of heat transfer augmentation due to obstacles mounted in solar air heater duct. Experimental Heat Transfer 0:0, pages 1-20.
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Morteza Khoshvaght-Aliabadi, I. Rahmani & J. Abolfazli Esfahani. (2022) Influences of twisted turbulators arrangements on heat transfer and airflow resistance over absorber plate of solar air heater. Experimental Heat Transfer 0:0, pages 1-23.
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Articles from other publishers (4)

Varun Pratap Singh, Siddharth Jain, Ashish Karn, Gaurav Dwivedi, Tabish Alam & Ashwani Kumar. (2022) Experimental Assessment of Variation in Open Area Ratio on Thermohydraulic Performance of Parallel Flow Solar Air Heater. Arabian Journal for Science and Engineering 48:9, pages 11695-11711.
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Mukesh Kumar Sahu, Vikash Kumar Gorai & Bikash Chandra Saha. (2023) Applications of extended surfaces for improvement in the performance of solar air heaters—a detailed systematic review. Environmental Science and Pollution Research 30:19, pages 54429-54447.
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Nishidh Naik Burye, Ravishankar Sathyamurthy & Deepakkumar Rajagopal. (2022) Computational fluid dynamics–based parametric study on the performance of solar air heater channel. Environmental Science and Pollution Research 30:11, pages 30321-30342.
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Mukesh Kumar Sahu, Manjeet Kharub & Mahalingam Murugesan Matheswaran. (2022) Nusselt number and friction factor correlation development for arc-shape apex upstream artificial roughness in solar air heater. Environmental Science and Pollution Research 29:43, pages 65025-65042.
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