Performance Analysis of a Novel Cross-flow Solar Air Heater with Square Perforated Absorber Plate: An Experimental Study

Publish Year: 1402
نوع سند: مقاله ژورنالی
زبان: English
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شناسه ملی سند علمی:

JR_IJEE-14-4_008

تاریخ نمایه سازی: 5 شهریور 1402

Abstract:

The current study introduces and analyzes a novel square cross-flow perforated solar air heater (SAH). Since the convection mechanism in SAHs is weak, numerous methods have been suggested to address this problem and improve thermal efficiency. Perforations and cross-flow configuration generate high turbulency and, consequently, high convection rate resulted. Hence these methods have been applied to enhance thermal efficiency. To achieve this goal, an experimental setup was fabricated and tested at outdoor conditions for two air mass flow rates (mair) of ۰.۰۱۵ kg/s and ۰.۰۳ kg/s while several sensors monitored the collector’s heat dynamics and ambient conditions. The obtained results illustrate that outlet temperature reaches the peak values of ۳۸ oC and ۳۴ oC, which is only ۶ oC and ۷ oC lower than the maximum absorber temperature. This crucial issue proves a high heat exchange rate in the fabricated SAH that causes the absorber temperature to approach the outlet temperature due to high turbulency. The strong convection mechanism in the fabricated SAH improves daily thermal efficiency, in which its value reaches nearly ۷۸.۶% for the mass flow rate of ۰.۰۳ kg/s. In conclusion, the square cross-flow perforated SAH is an economy, applicable, compact collector, ensuring high thermal efficiency.

Keywords:

Cross-flow perforated solar air heaters , Perforations , Thermal efficiency , Transient dynamics

Authors

H. Farzan

Mechanical Engineering Department, Faculty of Engineering, Higher Education Complex of Bam, Bam, Iran

A. A. Abouee-Mehrizi

Industrial Engineering Department, Faculty of Engineering, Higher Education Complex of Bam, Bam, Iran

M. Khazali

Mathematics Department, Faculty of Mathematics and Computing, Higher Education Complex of Bam, Bam, Iran

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