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Performance assessment of solar chimney power plants with natural thermal energy storage materials on ground: CFD analysis with experimental validation
[Optimised performance of a thermally resistive PV glazing technology: an experimental validation]

Author

Listed:
  • Erdem Cuce
  • Abhishek Saxena
  • Pinar Mert Cuce
  • Harun Sen
  • Hasan Eroglu
  • Shanmuga Priya Selvanathan
  • Kumarasamy Sudhakar
  • Md Hasanuzzaman

Abstract

This study interprets the effect of using sand or gravel as energy storage unit in solar chimney power plants. The effect of using low-cost materials is evaluated. Based on the Manzanares pilot plant, a 3D CFD model is created. Geometric parameters are kept constant in simulations performed with ANSYS FLUENT engineering commercial software. By simultaneously solving DO (discrete ordinates) solar ray tracing algorithm and RNG k-ε turbulence model, the outputs of the system are examined at 290 and 300 K temperatures. The temperature distribution and power outputs of the use of sand and gravel as soil material at different temperatures and solar radiation are compared. It is understood that the use of both materials does not significantly affect the performance of the system and can be used economically instead of each other. It is seen that the system will give a power output of approximately 41.636 kW with both storage materials at a radiation intensity of 800 W/m2 and an ambient temperature of 300 K. It is seen that the ambient temperature affects the temperature increase in the system, and the temperature increase is higher at 290 K.

Suggested Citation

  • Erdem Cuce & Abhishek Saxena & Pinar Mert Cuce & Harun Sen & Hasan Eroglu & Shanmuga Priya Selvanathan & Kumarasamy Sudhakar & Md Hasanuzzaman, 2022. "Performance assessment of solar chimney power plants with natural thermal energy storage materials on ground: CFD analysis with experimental validation [Optimised performance of a thermally resisti," International Journal of Low-Carbon Technologies, Oxford University Press, vol. 17, pages 752-759.
  • Handle: RePEc:oup:ijlctc:v:17:y:2022:i::p:752-759.
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    References listed on IDEAS

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    1. Erdem Cuce & Abhishek Saxena & Pinar Mert Cuce & Harun Sen & Shaopeng Guo & K Sudhakar, 2021. "Performance assessment of solar chimney power plants with the impacts of divergent and convergent chimney geometry," International Journal of Low-Carbon Technologies, Oxford University Press, vol. 16(3), pages 704-714.
    2. Tingzhen, Ming & Wei, Liu & Guoling, Xu & Yanbin, Xiong & Xuhu, Guan & Yuan, Pan, 2008. "Numerical simulation of the solar chimney power plant systems coupled with turbine," Renewable Energy, Elsevier, vol. 33(5), pages 897-905.
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    Cited by:

    1. Erdem Cuce, 2022. "Dependence of electrical power output on collector size in Manzanares solar chimney power plant: an investigation for thermodynamic limits [Solar chimney power plants: a review of the concepts, des," International Journal of Low-Carbon Technologies, Oxford University Press, vol. 17, pages 1223-1231.
    2. Arefian, Amir & Hosseini-Abardeh, Reza & Rahimi-Larki, Mohsen & Torkfar, Arman & Sarlak, Hamid, 2024. "A comprehensive analysis of time-dependent performance of a solar chimney power plant equipped with a thermal energy storage system," Renewable and Sustainable Energy Reviews, Elsevier, vol. 189(PB).

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