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SOLAR PHOTOVOLTAIC POWER STATION SYSTEM BASED ON COMPOSITE HEAT SOURCE THERMAL POWER TECHNOLOGY

ABSTRACT
In order to solve the shortcomings of single air source heat pump, single solar heat pump and solar air double heat source heat pump, one solar electric heat pump and multi-stage solar heat pump dual source heat pump, a solar integrated heat source heat pump is designed. The heating capacity and COP of the same heat pump and the solar double heat pump under three different operating conditions were simulated, and the simulation results were compared and analyzed. The simulation results were analyzed. The results show that the heat capacity and COP of the solar double heat pump system are higher than those of the heat pump system. With the continuous decrease of outdoor temperature, the advantages of solar wind tunnel hybrid heat pump system are more obvious.
KEYWORDS
PAPER SUBMITTED: 2022-06-02
PAPER REVISED: 2022-08-01
PAPER ACCEPTED: 2022-08-19
PUBLISHED ONLINE: 2023-03-25
DOI REFERENCE: https://doi.org/10.2298/TSCI2302967F
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THERMAL SCIENCE YEAR 2023, VOLUME 27, ISSUE Issue 2, PAGES [967 - 973]
REFERENCES
  1. Fan, G., et al., Thermal Management Strategy of Photoelectric System of Sunlight Concentrating Space Solar Power Station, Advances in Astronautics Science and Technology, 5 (2022), 1, pp. 19-29
  2. Shoeibi, S., et al., Performance Analysis of Finned Photovoltaic/Thermal Solar Air Dryer with Using a Compound Parabolic Concentrator, Applied Energy, 304 (2021), 233, 117778
  3. Venkateswarlu, K., et al., Synthesis, Characterization and Application of Mono-, Hybrid and Ternary Nanofluids in Hybrid Photovoltaic Thermal (PV/T) Solar Systems - A Review, Journal of the Brazilian Society of Mechanical Sciences and Engineering, 44 (2022), 11, pp. 1-21
  4. Barshilia, H. C., et al., On the Thermal Stability and Performance Evaluation of SI Doped Transition Metal Nitride/Oxide Nanolayered Multilayer-Based Spectrally Selective Absorber for High-Temperature photo-thermal applications. Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photo-Thermal and Photochemical Solar Energy Conversion, 241 (2022), 33, 55
  5. Martinez-Gracia, A., et al., Energy and Environmental Benefits of an Integrated Solar Photovoltaic and Thermal Hybrid, Seasonal Storage and Heat Pump System for Social Housing, Applied Thermal Engineering: Design, Processes, Equipment, Economics, 44 (2022), 1, 213
  6. Sina, M. A., et al., Assessment of Stand-Alone Photovoltaic System and Mini-Grid Solar System as Solutions to Electrification of Remote Villages in Afghanistan, International Journal of Innovative Research and Scientific Studies, 4 (2021), 70, 1
  7. Wei, L. M., et al., Research on the Maximum Power Point Tracking Method of Photovoltaic Based on Newton Interpolation-Assisted Particle Swarm Algorithm, Clean Energy, 5 (2022), 3, 3
  8. Sami, S., Impact of the Magnetic Field on the Performance of Heat Pipes Driven by a Photovoltaic-Thermal Panel with Nanofluids, Applied System Innovation, 4 (2021), 3, 102
  9. Xu, J., Intelligent Irrigation System Based on Solar Photovltaic Technology, Journal of Agricultural Mechanization Research, 88 (2020), 5, 8
  10. Wang, R., et al., Research on the Integrated Design of Solar Thermal Energy Systems and Existing Multi-Storey Residential Buildings, National Library of Serbia, 6 (2021), 5, 3
  11. Zhang, T., et al., A High‐Efficiency, Portable, Solar‐Powered Cooling System Based on a Foldable‐Flower Mechanism and Wireless Power Transfer Technology for Vehicle Cabins, Energy Technology, 8 (2020), 6, 2000028
  12. Ramesh, T., et al., Numerical Simulation of Heat Sinks with Different Configurations for High Power Led Thermal Management, International Journal for Simulation and Multidisciplinary Design Optimization, 13 (2022), 44, 18
  13. Siaka T., Effect of the Dynamic Resistance on the Maximum Output Power in Dynamic Modelling of Photovoltaic Solar Cells, Open Journal of Modelling and Simulation, 10 (2022), 1, 10
  14. Baskaran, S., et al., Modelling and Optimization of Photovoltaic Serpentine Type Thermal Solar Collector with Thermal Energy Storage System for Hot Water and Electricity Generation for Single Residential Building, Environmental Science and Pollution Research, 29 (2022), 39, pp. 59575-59591
  15. Lian, S., et al., Co-Ordinated Control of Multi-Terminal MVDC Distribution Network with Photovoltaic Power Station, IOP Conference Series: Earth and Environmental Science, 714 (2021), 4, 042039
  16. Manisha, Pinkey, Kumari, M., et al., A Review on Solar Photovoltaic System Efficiency Improving Technologies, Applied Solar Energy, 7 (2022), 6, 2
  17. Paul, K., Modified Grey Wolf Optimization Approach for Power System Transmission-Line Congestion Management Based on the Influence of Solar Photovoltaic System, International Journal of Energy and Environmental Engineering, 7 (2022), 12, pp. 1-17
  18. Boutasseta, N., et al., Experimental Evaluation of Moth-Flame Optimization Based GMPPT Algorithm for Photovoltaic Systems Subject to Various Operating Conditions, Applied Solar Energy, 58 (2022), 1, pp. 1-14
  19. Khademy, M., et al., Application of Trigeneration System Power by Concentrating Photovoltaic-Thermal Solar Collectors for Energy Demands of an Industrial Complex, International Journal of Energy and Environmental Engineering, 4 (2022), 2, pp. 1-28
  20. Song, B., et al., Research on the Influence of Secondary Heat Network Characteristics on Wind Power Consumption in the Combined Electric and Heat System, IOP Publishing Ltd., 6 (2020), 33, 9

© 2024 Society of Thermal Engineers of Serbia. Published by the Vinča Institute of Nuclear Sciences, National Institute of the Republic of Serbia, Belgrade, Serbia. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution-NonCommercial-NoDerivs 4.0 International licence