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Application of Sayigh “Universal Formula” for global solar radiation estimation in the Niger Delta region of Nigeria

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  • Chineke, Theo Chidiezie
  • Okoro, Ugochukwu Kingsley

Abstract

In recent years, renewable energy utilisation in various applications has increased significantly. Applications involving solar thermal energy include air and water heating whilst solar photovoltaic systems have been installed to provide electricity for households in urban and rural areas of the developing economies. The solar radiation data are not easily available for many countries and is therefore estimated most of the times. In this work is presented the results of evaluating the Sayighr “Universal formula” for estimating the global solar radiation in the Niger Delta region of Nigeria with Umudike (longitude 7.33°E, latitude 5.29°N) as a case study. The levels of the global solar radiation which ranged from 1.99kWh to 6.75kWh, computed with the method are in agreement with those of earlier authors indicating that the method can be used for reproducing signatures of global solar radiation in the region when actual measurements are not available.

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  • Chineke, Theo Chidiezie & Okoro, Ugochukwu Kingsley, 2010. "Application of Sayigh “Universal Formula” for global solar radiation estimation in the Niger Delta region of Nigeria," Renewable Energy, Elsevier, vol. 35(3), pages 734-739.
  • Handle: RePEc:eee:renene:v:35:y:2010:i:3:p:734-739
    DOI: 10.1016/j.renene.2009.08.010
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    References listed on IDEAS

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    1. John-Felix Akinbami, 2001. "Renewable energy resources and technologies in Nigeria: present situation, future prospects and policy framework," Mitigation and Adaptation Strategies for Global Change, Springer, vol. 6(2), pages 155-182, June.
    2. Oduro-Afriyie, K., 1997. "Performance of Sayigh's universal formula for the estimation of global solar radiation in Ghana," Renewable Energy, Elsevier, vol. 10(1), pages 91-106.
    3. Halawa, E.E.H & Sugiyatno,, 2001. "Estimation of global solar radiation in the Indonesian climatic region," Renewable Energy, Elsevier, vol. 24(2), pages 197-206.
    4. Adeoti, O. & Oyewole, B.A. & Adegboyega, T.D., 2001. "Solar photovoltaic-based home electrification system for rural development in Nigeria: domestic load assessment," Renewable Energy, Elsevier, vol. 24(1), pages 155-161.
    5. Chineke, Theo Chidiezie, 2008. "Equations for estimating global solar radiation in data sparse regions," Renewable Energy, Elsevier, vol. 33(4), pages 827-831.
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    Cited by:

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    4. Nwokocha, Cecily O. & Okoro, Ugochukwu K. & Usoh, Chizomam I., 2018. "Photovoltaics in Nigeria – Awareness, attitude and expected benefit based on a qualitative survey across regions," Renewable Energy, Elsevier, vol. 116(PA), pages 176-182.
    5. Giwa, Adewale & Alabi, Adetunji & Yusuf, Ahmed & Olukan, Tuza, 2017. "A comprehensive review on biomass and solar energy for sustainable energy generation in Nigeria," Renewable and Sustainable Energy Reviews, Elsevier, vol. 69(C), pages 620-641.
    6. Okoye, Chiemeka Onyeka & Bahrami, Arian & Atikol, Ugur, 2018. "Evaluating the solar resource potential on different tracking surfaces in Nigeria," Renewable and Sustainable Energy Reviews, Elsevier, vol. 81(P1), pages 1569-1581.
    7. Dike, V.N. & Chineke, T.C. & Nwofor, O.K. & Okoro, U.K., 2012. "Optimal angles for harvesting solar electricity in some African cities," Renewable Energy, Elsevier, vol. 39(1), pages 433-439.

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