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Computational Fluid Dynamics Investigation of Packed Bed Solar Air Heater by Aspect Ratio Optimization

Original scientific paper

Journal of Sustainable Development of Energy, Water and Environment Systems
ARTICLE IN PRESS (scheduled for Vol 15, Issue 01), 1140776
DOI: https://doi.org/10.13044/j.sdewes.d14.0776 (registered soon)
Aya Ali Turki Jawad , Mahmoud Mustafa Mahdi, Mohammed Jawad Mohammed
University of Technology, Baghdad, Iraq

Abstract

Packed-bed solar air heaters have attracted considerable interest due to their ability to improve heat transfer efficiency. This study numerically investigates the influence of channel aspect ratio on the thermo-hydraulic performance of a packed-bed solar air heater filled with mixed-size aluminium spherical elements. Three-dimensional CFD simulations were performed in ANSYS 2023 R1 under steady-state turbulent flow conditions using the standard k–ε model. Four channel heights (8, 10, 12, and 14 cm) were evaluated while maintaining identical operating conditions. The results show that channel height significantly affects both heat transfer and pressure loss. The 12 cm channel height provided the best overall performance, achieving the highest outlet air temperature and thermal efficiency with a relatively low pressure drop. Compared with the lowest aspect ratio, the optimum configuration increased thermal efficiency by approximately 85% and the thermo-hydraulic performance factor by about 76%. These findings provide practical guidance for the design and optimization of high-performance packed-bed solar air heaters.

Keywords: Aluminum balls, Aspect ratio Optimization, Computational Fluid Dynamics, Solar air heater, Thermo-hydraulic factor, Mixed-size spherical packing, Thermal efficiency.

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