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Design curves for conventional solar air heaters

Author

Listed:
  • Choudhury, C.
  • Chauhan, P.M.
  • Garg, H.P.

Abstract

The objective of this work is to assess the combined effects of fixed pressure drop and specific air mass flow rate on duct dimensions (length and depth) of single-pass-with-bare-plate, single-cover and double-cover solar air heaters, and to obtain the resultant system efficiency that corresponds to a pre-fixed pumping cost and a minimum material cost per unit area of the system. The design selection methodology adopted in this paper will make it feasible for an air-heater designer to construct efficient and economical solar air heaters.

Suggested Citation

  • Choudhury, C. & Chauhan, P.M. & Garg, H.P., 1995. "Design curves for conventional solar air heaters," Renewable Energy, Elsevier, vol. 6(7), pages 739-749.
  • Handle: RePEc:eee:renene:v:6:y:1995:i:7:p:739-749
    DOI: 10.1016/0960-1481(95)00007-7
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    References listed on IDEAS

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    1. Hamdan, M.A. & Jubran, B.A., 1992. "Thermal performance of three types of solar air collectors for the jordanian climate," Energy, Elsevier, vol. 17(2), pages 173-177.
    2. Choudhury, C. & Garg, H.P., 1991. "Design analysis of corrugated and flat plate solar air heaters," Renewable Energy, Elsevier, vol. 1(5), pages 595-607.
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    Cited by:

    1. Fan, Wenke & Kokogiannakis, Georgios & Ma, Zhenjun, 2019. "Optimisation of life cycle performance of a double-pass photovoltaic thermal-solar air heater with heat pipes," Renewable Energy, Elsevier, vol. 138(C), pages 90-105.
    2. Li, Bojia & You, Shijun & Ye, Tianzhen & Zhang, Huan & Li, Xianli & Li, Chao, 2014. "Mathematical modeling and experimental verification of vacuum glazed transpired solar collector with slit-like perforations," Renewable Energy, Elsevier, vol. 69(C), pages 43-49.
    3. Fan, Wenke & Kokogiannakis, Georgios & Ma, Zhenjun & Cooper, Paul, 2017. "Development of a dynamic model for a hybrid photovoltaic thermal collector – Solar air heater with fins," Renewable Energy, Elsevier, vol. 101(C), pages 816-834.
    4. Luna, D. & Nadeau, J.-P. & Jannot, Y., 2009. "Solar timber kilns: State of the art and foreseeable developments," Renewable and Sustainable Energy Reviews, Elsevier, vol. 13(6-7), pages 1446-1455, August.
    5. Tchinda, Réné, 2009. "A review of the mathematical models for predicting solar air heaters systems," Renewable and Sustainable Energy Reviews, Elsevier, vol. 13(8), pages 1734-1759, October.
    6. Shukla, Ashish & Nkwetta, Dan Nchelatebe & Cho, Y.J. & Stevenson, Vicki & Jones, Phil, 2012. "A state of art review on the performance of transpired solar collector," Renewable and Sustainable Energy Reviews, Elsevier, vol. 16(6), pages 3975-3985.
    7. Zheng, Wandong & Li, Bojia & Zhang, Huan & You, Shijun & Li, Ying & Ye, Tianzhen, 2016. "Thermal characteristics of a glazed transpired solar collector with perforating corrugated plate in cold regions," Energy, Elsevier, vol. 109(C), pages 781-790.

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