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New solar cooker of parabolic square dish: Design and simulation

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  • El-Kassaby, M.M.

Abstract

A complete design and fabrication for a parabolic square dish solar cooker is presented. This cooker can be used for water distillation as well as cooking in an isolated area. A simulation model for transient state was introduced to predict the pot, fluid, air gap and cover temperatures. Satisfactory agreement are obtained by comparing experimental and theoretical results.

Suggested Citation

  • El-Kassaby, M.M., 1991. "New solar cooker of parabolic square dish: Design and simulation," Renewable Energy, Elsevier, vol. 1(1), pages 59-65.
  • Handle: RePEc:eee:renene:v:1:y:1991:i:1:p:59-65
    DOI: 10.1016/0960-1481(91)90104-W
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    References listed on IDEAS

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    1. Khalifa, A.M.A. & Akyurt, M. & Taha, M.M.A., 1986. "Cookers for solar homes," Applied Energy, Elsevier, vol. 24(2), pages 77-89.
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    Cited by:

    1. Panwar, N.L. & Kaushik, S.C. & Kothari, Surendra, 2012. "State of the art of solar cooking: An overview," Renewable and Sustainable Energy Reviews, Elsevier, vol. 16(6), pages 3776-3785.
    2. Hafez, A.Z. & Soliman, Ahmed & El-Metwally, K.A. & Ismail, I.M., 2017. "Design analysis factors and specifications of solar dish technologies for different systems and applications," Renewable and Sustainable Energy Reviews, Elsevier, vol. 67(C), pages 1019-1036.
    3. Indora, Sunil & Kandpal, Tara C., 2018. "Institutional cooking with solar energy: A review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 84(C), pages 131-154.
    4. Kumar, Naveen & Vishwanath, G. & Gupta, Anurag, 2012. "An exergy based unified test protocol for solar cookers of different geometries," Renewable Energy, Elsevier, vol. 44(C), pages 457-462.

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