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Numerical investigation of passive cooling strategies for photovoltaic modules using recycled polyurethane foam and aluminum fins

2026-07-22 · Springer Link (Chiba Institute of Technology)

One-line summary

A solar energy research paper on Numerical investigation of passive cooling strategies for photovoltaic modules using recycled polyurethane foam and aluminum fins.

Engineering notes

Engineering notes will be added by the Power for Solar editorial team.

Chinese explanation / 中文解读

中文解读待补充:本站会优先为光伏效率、钙钛矿太阳能电池、储能技术、太阳能热利用、BIPV、并网技术等高价值论文补充中文说明。

Original abstract

This work presents a numerical study of two passive cooling strategies for photovoltaic (PV) modules using recycled materials. The main goal is to limit the performance losses caused by high operating temperatures under real outdoor conditions, which differ significantly from Standard Test Conditions (STC), and to improve the overall electrical efficiency. The analysis is performed using three-dimensional transient simulations in COMSOL Multiphysics, coupling heat transfer and fluid flow in solid and porous domains. In the first configuration, a recycled polyurethane (PU) foam layer saturated with water is applied at the rear of the PV module to enhance heat dissipation through coupled heat and moisture transport within the porous structure, including evaporative cooling effects. The second configuration uses aluminum fins attached to the rear surface of the module, increasing the heat exchange area and strengthening natural convection with ambient air. The results show that the PU foam and aluminum fin systems reduce the average operating temperature by 16.4 °C and 9.8 °C, respectively, compared with the reference module. These reductions translate into relative electrical efficiency improvements of 8.49% and 5.10%, confirming the effectiveness of both passive cooling approaches under the studied conditions.

5.0Engineering value
7.0Research novelty
4.0Business relevance

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