Analysis of Technical and Technological Parameters of Solar Thermal Power Plants


Mammadov F., Kalbaliyev F.

1st International Conference on Smart Environment and Green Technologies, ICSEGT 2024, Baku, Azerbaijan, 12 - 13 April 2024, vol.1251 LNNS, pp.37-44, (Full Text) identifier

  • Nəşrin Növü: Conference Paper / Full Text
  • Cild: 1251 LNNS
  • Doi nömrəsi: 10.1007/978-3-031-81567-6_5
  • Çap olunduğu şəhər: Baku
  • Ölkə: Azerbaijan
  • Səhifə sayı: pp.37-44
  • Açar sözlər: Concentrated solar power, Photovoltaic, Power cycles, Solar energy, Solar power tower, Supercritical CO2, Sustainable energy
  • Açıq Arxiv Kolleksiyası: Konfrans Materialı, Məqalə
  • Adres: Yox

Qısa məlumat

Solar energy offers immense potential for clean electricity generation through technologies like concentrated solar power plants. Concentrated solar power technology is positioned as a significant player in the future renewable energy landscape due to its stable and reliable power generation capabilities and decreasing costs and environmental benefits. This paper analyzes the technical and technological parameters of concentrated solar power plants in order to identify key trends, advantages, and challenges. We examine four main concentrated solar power types: parabolic dish, parabolic trough, solar power tower, and linear Fresnel reflector. Our study highlights solar power tower as a standout technology, owing to its expansive temperature range, competitive cost per kilowatt, and extended storage capabilities. We also discuss the potential integration of the supercritical carbon dioxide Brayton cycle to enhance efficiency. We hope our analysis sheds light on the promising trajectory of solar power tower technology in shaping the future landscape of concentrated solar power plants.