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Research Article

Modelling and performance investigation of a solar chimney power plant with glass-covered solar collector

ORCID Icon, , ORCID Icon, ORCID Icon, &
Pages 5201-5218 | Received 01 Aug 2023, Accepted 18 Feb 2024, Published online: 03 Apr 2024

References

  • Albaldawi, R. A., A. K. Shyaa, H. S. Nuri (2014) Heat storage enhanced in solar chimney power plant model by using PCM material. In ASME Power Conference 2014 Jul 28 (Vol. 46094, p. V002T09A001). American Society of Mechanical Engineers.
  • Al-Kayiem, H. H., and O. C. Aja. 2017. Historic and recent progress in solar chimney power plant enhancing technologies. Renewable & Sustainable Energy Reviews 58:1269–92. doi:10.1016/j.rser.2015.12.331.
  • Al-Kayiem, H. H., M. A. Aurybi, S. I. Gilani, A. A. Ismaeel, and S. T. Mohammad. 2019. Performance evaluation of hybrid solar chimney for uninterrupted power generation. Energy 166:490–505. doi:10.1016/j.energy.2018.10.115.
  • Avcı, A. S., H. Karakaya, and A. Durmuş. 2020. Numerical and experimental investigation of solar chimney power plant system performance. Energy Sources, Part A: Recovery Util Environ Eff 9:1–9.
  • Ayadi, A., Z. Driss, A. Bouabidi, and M. S. Abid. 2017. Experimental and numerical study of the impact of the collector roof inclination on the performance of a solar chimney power plant. Energy Buildings 139:263–76. doi:10.1016/j.enbuild.2017.01.047.
  • Ayadi, A., Z. Driss, A. Bouabidi, and M. S. Abid. 2018. Effect of the turbine diameter on the generated power of a solar chimney power plant. Energy & Environment 29 (5):822–36. doi:10.1177/0958305X18761148.
  • Bouabidi, A., H. Nasraoui, A. Ayadi, Z. Driss, and M. S. Abid. 2019. Numerical analysis of chimney diameter effect on the fluid flow and the heat transfer characteristics within the solar tower. Energy Sources Part A: Recovery, Utilization, and Environmental Effects 41 (20):2494–506. doi:10.1080/15567036.2019.1568631.
  • Buğutekin, A. 2012. Experimental study of temperature field in a solar chimney plant in Adiyaman. Isi Bilimi Ve Teknigi Dergisi/Journal of Thermal Science & Technology 32 (2).
  • Guo, P. H., J. Y. Li, and Y. Wang. 2014. Numerical simulations of solar chimney power plant with radiation model. Renew Energy 62:24–30. doi:10.1016/j.renene.2013.06.039.
  • Islam, M. M., M. Hasanuzzaman, N. A. Rahim, A. K. Pandey, M. Rawa, and L. Kumar. 2021. Real time experimental performance investigation of a NePCM based photovoltaic thermal system: An energetic and exergetic approach. Renew Energy 172:71–87. doi:10.1016/j.renene.2021.02.169.
  • Jemli, M. R., N. Naili, A. Farhat, and A. Guizani. 2017. Experimental investigation of solar tower with chimney effect installed in CRTEn. International Journal of Hydrogen Energy 42 (13):8650–60. doi:10.1016/j.ijhydene.2016.07.044.
  • Kasaeian, A., A. R. Mahmoudi, F. R. Astaraei, and A. Hejab. 2017. 3D simulation of solar chimney power plant considering turbine blades. Energy Conversion and Management 147:55–65. doi:10.1016/j.enconman.2017.05.029.
  • Khelifi, C., F. Ferroudji, and M. Ouali. 2016. Analytical modeling and optimization of a solar chimney power plant. International Journal of Engineering Research in Africa 25:78–88. doi:10.4028/www.scientific.net/JERA.25.78.
  • Kuscu, H., and D. Eryener. 2020. The effect of flow rate on small solar chimney performance. Energy Sources Part A: Recovery, Utilization, and Environmental Effects 3:1–5. doi:10.1080/15567036.2020.1773970.
  • Maghrebi, M. J., R. Masoudi Nejad, and S. Masoudi. 2017. Performance analysis of sloped solar chimney power plants in the southwestern region of Iran. International Journal of Ambient Energy 38 (6):542–49. doi:10.1080/01430750.2016.1155487.
  • Ming, T., J. Gui, de Richter RK, Y. Pan, G. Xu, and R. K. de Richter. 2013. Numerical analysis on the solar updraft power plant system with a blockage. Solar Energy 98:58–69. doi:10.1016/j.solener.2013.02.027.
  • Mokrani, O. B., M. R. Ouahrani, M. H. Sellami, and L. Segni. 2020. Experimental investigations of hybrid: Geothermal water/solar chimney power plant. Energy Sources Part A: Recovery, Utilization, and Environmental Effects 27:1–8. doi:10.1080/15567036.2020.1810830.
  • Sardarabadi, M., M. Passandideh-Fard, and S. Z. Heris. 2014. Experimental investigation of the effects of silica/water nanofluid on PV/T (photovoltaic thermal units). Energy 66:264–72. doi:10.1016/j.energy.2014.01.102.
  • Schlaich, J. R., R. Bergermann, W. Schiel, and G. Weinrebe. 2005. Design of commercial solar updraft tower systems—utilization of solar induced convective flows for power generation. Journal of Solar Energy Engineering 127 (1):117–24. doi:10.1115/1.1823493.
  • Yassen, T. A., F. M. Abed, M. S. Kassim, and I. S. Farhan 2018. Experimental investigation of the performance of a multi-purpose solar chimney power plant. Paper presented 2nd International Conference for Engineering, Technology and Sciences of Al-Kitab (ICETS) 2018 Dec 4 (pp. 88–92). IEEE.
  • Zhou, X., J. Yang, B. Xiao, and G. Hou. 2007. Experimental study of temperature field in a solar chimney power setup. Applied Thermal Engineering 27 (11–12):2044–50. doi:10.1016/j.applthermaleng.2006.12.007.

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