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Periodic theory of greenhouse integrated semi-transparent photovoltaic thermal (GiSPVT) system integrated with earth air heat exchanger (EAHE)

Author

Listed:
  • Yadav, Somil
  • Panda, S.K.
  • Tiwari, G.N.
  • Al-Helal, Ibrahim M.
  • Hachem-Vermette, Caroline

Abstract

Periodic analysis is the best method to analyze any thermal system, even for a typical day, and the same thermal modeling can be extended for monthly performance without knowing the initial condition. A periodic thermal model for greenhouse integrated semi-transparent photovoltaic thermal (GiSPVT) system connected with earth air heat exchanger (EAHE) in terms of design, and climatic parameters have been developed. Based on the proposed periodic model, the effect of packing factor, mass flow rate of air flowing through EAHE, heat capacity of the plant on PV cell temperature, greenhouse air temperature, and plant temperature of GiSPVT system is investigated for harsh winter condition. Results indicate that it is economical to operate EAHE only during off sunshine hours. The value of both greenhouse and plant temperature increases with an increase in the mass flow rate of air flowing through EAHE. For a flow rate of 0.5 kg/s, the additional thermal energy supplied by the EAHE to the GiSPVT system increases plant and greenhouse air temperature by 4 °C and 5 °C, respectively. Moreover, electrical power of 11.74 kW has also been obtained to make the system self-sustained.

Suggested Citation

  • Yadav, Somil & Panda, S.K. & Tiwari, G.N. & Al-Helal, Ibrahim M. & Hachem-Vermette, Caroline, 2022. "Periodic theory of greenhouse integrated semi-transparent photovoltaic thermal (GiSPVT) system integrated with earth air heat exchanger (EAHE)," Renewable Energy, Elsevier, vol. 184(C), pages 45-55.
  • Handle: RePEc:eee:renene:v:184:y:2022:i:c:p:45-55
    DOI: 10.1016/j.renene.2021.11.063
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    References listed on IDEAS

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    1. Li, Hui & Ni, Long & Yao, Yang & Sun, Cheng, 2020. "Annual performance experiments of an earth-air heat exchanger fresh air-handling unit in severe cold regions: Operation, economic and greenhouse gas emission analyses," Renewable Energy, Elsevier, vol. 146(C), pages 25-37.
    2. Nayak, Sujata & Tiwari, G.N., 2010. "Energy metrics of photovoltaic/thermal and earth air heat exchanger integrated greenhouse for different climatic conditions of India," Applied Energy, Elsevier, vol. 87(10), pages 2984-2993, October.
    3. Peretti, Clara & Zarrella, Angelo & De Carli, Michele & Zecchin, Roberto, 2013. "The design and environmental evaluation of earth-to-air heat exchangers (EAHE). A literature review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 28(C), pages 107-116.
    4. Tavares, C & Gonçalves, A & Castro, P & Loureiro, D & Joyce, A, 2001. "Modelling an agriculture production greenhouse," Renewable Energy, Elsevier, vol. 22(1), pages 15-20.
    5. Tiwari, G.N. & Akhtar, M.A. & Shukla, Ashish & Emran Khan, M., 2006. "Annual thermal performance of greenhouse with an earth–air heat exchanger: An experimental validation," Renewable Energy, Elsevier, vol. 31(15), pages 2432-2446.
    6. Ozgener, Onder & Ozgener, Leyla & Goswami, D. Yogi, 2017. "Seven years energetic and exergetic monitoring for vertical and horizontal EAHE assisted agricultural building heating," Renewable and Sustainable Energy Reviews, Elsevier, vol. 80(C), pages 175-179.
    7. Bisoniya, Trilok Singh & Kumar, Anil & Baredar, Prashant, 2013. "Experimental and analytical studies of earth–air heat exchanger (EAHE) systems in India: A review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 19(C), pages 238-246.
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