NUMERICAL MODELING OF HEAT TRANSFER PROCESSES IN A SOLAR PHOTOVOLTAIC MODULE WITH WATER COOLING OF THE EXTERNAL SURFACE
PDF (Uzbek)

Keywords

solar photovoltaic module water cooling heat transfer energy balance electrical efficiency

How to Cite

Ibragimov, U. K., & Xolmatov, F. T. (2026). NUMERICAL MODELING OF HEAT TRANSFER PROCESSES IN A SOLAR PHOTOVOLTAIC MODULE WITH WATER COOLING OF THE EXTERNAL SURFACE. Alternative Energy, 22(1), 9-13. https://doi.org/10.70769/2181-2284.ME.1(22).2026.1

Abstract

The electrical efficiency of photovoltaic (PV) modules strongly depends on the module surface temperature, and an increase in temperature reduces power generation. Therefore, enhancing heat transfer by cooling PV modules with water is an important approach for improving their operational performance.

Materials and Methods

A mathematical model describing the heat transfer processes of a photovoltaic module cooled by water on its external surface was developed. The model was based on energy balance equations, and numerical simulations were performed to evaluate the thermal behavior of the cooling system.

Results

The simulation results showed that increasing the cooling water flow rate to 0.01–0.05 kg/s reduced the coolant temperature by 5–8 °C, while the module temperature stabilized within 40–60 s. Increasing the water flow rate from 0.005 kg/s to 0.02 kg/s improved the electrical efficiency of the photovoltaic module by approximately 2.0–2.5%.

Conclusion

Water cooling effectively reduces the operating temperature of photovoltaic modules and enhances electrical power generation efficiency. The proposed approach offers a practical solution for improving the energy performance and operational reliability of photovoltaic systems.

PDF (Uzbek)

References

[1]. Hachicha A.A., Ghenai C., Hamid A.K. Enhancing the performance of a photovoltaic module using different cooling methods // International Journal of Energy and Power Engineering. – 2015. – Vol. 9. – P. 1106–1109.

[2]. Moharram K.A., Abd-Elhady M.S., Kandil H.A., El-Sherif H. Enhancing the performance of photovoltaic panels by water cooling // Ain Shams Engineering Journal. – 2013. – Vol. 4. – P. 869–877.

[3]. Zilli B.M., Lenz A.M., de Souza S.N.M., Secco D., Nogueira C.E.C., Junior O.H.A., Nadaleti W.C., Siqueira J.A.C., Gurgacz F. Performance and effect of water-cooling on a microgeneration system of photovoltaic solar energy in Paraná, Brazil // Journal of Cleaner Production. – 2018. – Vol. 192. – P. 477–485.

[4]. Raad H., Ali S., Faraj J., Castelain C., Chahine Kh., Khaled M. Enhancing photovoltaic performance through water-based cooling: A comprehensive review of passive and active techniques // Applied Thermal Engineering. – 2026. – Vol. 283. – Article 128943.

[5]. Wibowo S., Arifin Z., Rachmanto R.A., Himawanto D.A., Prasetyo S.D. Optimization of photovoltaic performance using a water spray cooling system with different nozzle types // International Journal of Computational Methods and Experimental Measurements. – 2024. – Vol. 12, No. 1. – P. 9–19.

Creative Commons License

This work is licensed under a Creative Commons Attribution 4.0 International License.

Copyright (c) 2026 Ibragimov, U.X., Xolmatov, F.T. (Muallif)

Downloads

Download data is not yet available.