Innovative water-cooling system for enhanced energy efficiency in photovoltaic-thermal system

Zaini, Muhammad Ibrahim Ali and Mustapha, Muslizainun and Nazri, Nurul Syakirah and Rosli, Nurul Nazli and Mutalib, Muhazri Abd and Sulong, Wan Mustafa Wan and Ibrahim, Mohd Adib and Fudholi, Ahmad (2025) Innovative water-cooling system for enhanced energy efficiency in photovoltaic-thermal system. Case Studies in Thermal Engineering, 70. p. 106137. ISSN 2214-157X

Full text not available from this repository. (Request a copy)

Abstract

Photovoltaic (PV) panels convert solar energy into electricity but suffer from efficiency losses as panel temperatures rise. A novel photovoltaic-thermal (PVT) system integrated with a water-cooling system (WCS) was developed in this study to alleviate this issue. Most of the previous studies attach TEC directly at the back surface of the PV panel to reduce PV temperature. However, this research develops a novel design of WCS to cool the water to 20 °C before it flows into the PVT collector . Comparative performance analysis between the PVT-WCS and conventional water-based PVT systems revealed that the PVT-WCS system achieved superior electrical and thermal efficiencies . Under solar irradiance of 846 W/m 2 and a mass flow rate of 0.05 kg/s, the PVT-WCS system demonstrated a 16.54 % increase in power output compared to the conventional PVT system. This enhancement is attributed to a steeper temperature gradient between the PV panel and the cooling fluid, improving the convective heat transfer coefficient and enabling more effective thermal energy removal. The PVT-WCS system achieved an overall energy efficiency of 83.26 %, outperforming the conventional PVT system of 80.02 %. The findings highlight the potential of integrating PVT with WCS to enhance energy generation and overall performance.

Item Type: Article
Uncontrolled Keywords: Water cooling system (WCS); Thermoelectric cooling; Peltier effect; Photovoltaic thermal; Energy analysis; Efficiency; Solar energy
Subjects: Industrial & Mechanical Engineering
Energy
Depositing User: Rizzal Rosiyan
Date Deposited: 24 Sep 2026 06:25
Last Modified: 24 Sep 2026 06:25
URI: https://karya.brin.go.id/id/eprint/60535

Actions (login required)

View Item
View Item