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Solar spectrum at depth in water

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  • Muaddi, J.A.
  • Jamal, M.A.

Abstract

In pure water, the solar spectrum at various depths from 1 cm to 200 m has been reconstructed. The reconstruction was performed via a computer program. Two sets of data were adopted in this work: the extinction coefficient of pure water in the wavelength range of 300–2500 nm and the solar spectrum at sea level in the same wavelength range.

Suggested Citation

  • Muaddi, J.A. & Jamal, M.A., 1991. "Solar spectrum at depth in water," Renewable Energy, Elsevier, vol. 1(1), pages 31-35.
  • Handle: RePEc:eee:renene:v:1:y:1991:i:1:p:31-35
    DOI: 10.1016/0960-1481(91)90100-4
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    Cited by:

    1. Liang, Shen & Zheng, Hongfei & Kang, Huifang & Zhao, Zhiyong & Ma, Xinglong & Zhu, Ziye & Cheng, Haiying & Yang, Jinrui, 2024. "Optical and electrical behavior of an underwater linear-focusing solar concentrating photovoltaic," Renewable Energy, Elsevier, vol. 221(C).
    2. Cazzaniga, R. & Cicu, M. & Rosa-Clot, M. & Rosa-Clot, P. & Tina, G.M. & Ventura, C., 2018. "Floating photovoltaic plants: Performance analysis and design solutions," Renewable and Sustainable Energy Reviews, Elsevier, vol. 81(P2), pages 1730-1741.
    3. Claus, R. & López, M., 2022. "Key issues in the design of floating photovoltaic structures for the marine environment," Renewable and Sustainable Energy Reviews, Elsevier, vol. 164(C).
    4. Ma, Xinglong & Wang, Zhenzhen & Zhao, Zhiyong & Liang, Shen & Liu, Zuyi & Zheng, Hongfei, 2024. "Simultaneous production of electricity and potable water underwater by integrating concentrating photovoltaic with air gap membrane distillation," Renewable Energy, Elsevier, vol. 226(C).

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