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Design optimization of a solar tower power plant heliostat field by considering different heliostat shapes
Authors:Abdelfetah Belaid  Abdelkader Filali  Amor Gama  Badreddine Bezza  Toufik Arrif  Mustapha Bouakba
Affiliation:1. Département de Génie Mécanique, Faculté des sciences appliquées, Université Kasdi Merbah-Ouargla, Ouargla, Algeria

Unité de Recherche Appliquée en Energies Renouvelables,URAER, Centre de Développement des Energies Renouvelables, CDER, Ghardaïa, Algeria;2. National Polytechnic School of Constantine, Constantine, Algeria;3. Unité de Recherche Appliquée en Energies Renouvelables,URAER, Centre de Développement des Energies Renouvelables, CDER, Ghardaïa, Algeria;4. Département de Génie Mécanique, Faculté des sciences appliquées, Université Kasdi Merbah-Ouargla, Ouargla, Algeria

Abstract:The present study focuses on the optimization of solar tower power plant heliostat field by considering different heliostat shapes including rectangular, square, pentagon, hexagon, heptagon, octagon, and circular heliostat shapes. The optimization is carried out using an in-house developed code-based MATLAB program. The developed in-house code is validated first on a well-known PS10 Solar Thermal Power plant having rectangular heliostats shape and the resulting yearly unweighted heliostat field efficiency of about 64.43% could be obtained. The optimized PS10 heliostat field using different heliostat shapes showed that the circular and octagon heliostat shapes provide better efficiency with minimum land area. The yearly efficiency is increased from 69.65% for the rectangular heliostat shape to 70.96% and 71% for the octagon and circular shapes, respectively. In addition, the calculated field area (land area) is reduced for the case of circular and octagon heliostat shapes with a gain of about 11.10% and 10.93% (about 42.0436 × 103 and 41.4036 × 103 m2), respectively, in comparison with the PS10 field area.
Keywords:enhanced heliostat field efficiency  heliostat field area  heliostat shape  optimized heliostat field  solar energy
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