• Optimized baffle enhanced thermal efficiency while maintaining acceptable pressure losses. • Numerical simulations showed strong agreement with experimental data. • Thermal efficiency reached 60% at 0.025 kg/s with 17–25 baffles. • The study demonstrates the strong solar energy potential of Gabes. This study aims to identify the optimal number of baffles in a Solar Air Heater (SAH) to achieve the best thermal performance with minimal pressure losses. Therefore, experimental evaluations were conducted under the environmental conditions of the Gabès region. In parallel, a CFD model was developed to simulate heat transfer and airflow within the system. Eight configurations, ranging from 0 to 25 baffles, were tested to determine the most effective design. The model was validated against experimental data, showing an average deviation of 5.27%. The results indicate that outlet air temperatures exceed 74°C for configurations with 17, 21, and 25 baffles. Furthermore, thermal efficiency increases with the number of baffles, exceeding 60% for these same configurations: It represents a 34% improvement over the smooth-duct system. Thus, the maximum pressure loss of 2615.4 Pa is recorded for the 25-baffle configuration, while it remains below 1257.7 Pa for the 17-baffle configuration at higher flow rates. Consequently, the 17-baffle configuration emerges as the optimal design, effectively balancing thermal efficiency and pressure losses. Furthermore, these results provide guidance for designing solar air heaters with balanced thermal and hydraulic performance.
Amara et al. (Tue,) studied this question.
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