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Ray tracing and simulation for the beam-down solar concentrator

Author

Listed:
  • Wei, Xiudong
  • Lu, Zhenwu
  • Yu, Weixing
  • Xu, Wenbin

Abstract

The ray tracing equations for the beam-down solar concentrator have been derived in this paper. Based on the equations, a new module for the simulation of the beam-down solar concentrating system has been developed and incorporated into the code HFLD. To validate the ray tracing equations, a simple beam-down solar concentrating system consisting of 3 heliostats and a hyperboloid reflector is simulated. The concentrated spots at the lower focal point of the hyperboloid reflector for the beam-down system are calculated by the modified code HFLD and then compared with that calculated by the commercial software Zemax. It is found that the calculated results coincide with each other basically. Furthermore, a beam-down solar concentrator consisting of 31 heliostats, a tower reflector and a CPC is designed and simulated by using the modified code HFLD. The concentrated spots of the beam-down solar concentrator are calculated.

Suggested Citation

  • Wei, Xiudong & Lu, Zhenwu & Yu, Weixing & Xu, Wenbin, 2013. "Ray tracing and simulation for the beam-down solar concentrator," Renewable Energy, Elsevier, vol. 50(C), pages 161-167.
  • Handle: RePEc:eee:renene:v:50:y:2013:i:c:p:161-167
    DOI: 10.1016/j.renene.2012.06.029
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    Citations

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    Cited by:

    1. Moreno Resendiz, Erick & Akhtar, Javed & Park, Young Ho & Wang, Huiyao & Xu, Pei & Kota, Krishna & Kuravi, Sarada, 2023. "Analysis of a small-scale modified beam-down solar concentrator system for low temperature applications," Renewable Energy, Elsevier, vol. 215(C).
    2. Behar, Omar & Khellaf, Abdallah & Mohammedi, Kamal, 2013. "A review of studies on central receiver solar thermal power plants," Renewable and Sustainable Energy Reviews, Elsevier, vol. 23(C), pages 12-39.
    3. Georgios E. Arnaoutakis & Dimitris Al. Katsaprakakis, 2021. "Concentrating Solar Power Advances in Geometric Optics, Materials and System Integration," Energies, MDPI, vol. 14(19), pages 1-25, September.
    4. Cruz, N.C. & Redondo, J.L. & Berenguel, M. & Álvarez, J.D. & Ortigosa, P.M., 2017. "Review of software for optical analyzing and optimizing heliostat fields," Renewable and Sustainable Energy Reviews, Elsevier, vol. 72(C), pages 1001-1018.
    5. Salgado Conrado, L. & Meda Campaña, J.A. & Palacios Montufar, C., 2014. "Dynamic model of a parabolic trough solar concentrator with a water displacement mechanism," Renewable Energy, Elsevier, vol. 63(C), pages 292-296.
    6. Calderón, Alejandro & Palacios, Anabel & Barreneche, Camila & Segarra, Mercè & Prieto, Cristina & Rodriguez-Sanchez, Alfonso & Fernández, A. Inés, 2018. "High temperature systems using solid particles as TES and HTF material: A review," Applied Energy, Elsevier, vol. 213(C), pages 100-111.

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