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CFD Simulation of Photovoltaic Thermal (PV/T) Cooling System with Various Channel Geometries

Publish Year: 1403
Type: Journal paper
Language: English
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JR_JHMTR-11-2_010

Index date: 1 October 2024

CFD Simulation of Photovoltaic Thermal (PV/T) Cooling System with Various Channel Geometries abstract

Photovoltaic/thermal (PV/T) is a solution for solar energy conversion devices to increase their efficiency. One of the challenges of PV/T is maintaining the temperature at optimal working conditions. Various studies have been conducted to improve PV/T performance, one of which is through the design of thermal collectors on PV/T. In this study, Computational Fluid Dynamics (CFD) simulations were conducted using four different types of channels: circular, hexagonal, semi-circular, and square. The channels were made with the same tube cross-sectional area and mass flow rate of 0.0016 m2 and 0.0096 kg/s, respectively. The simulation results show that the circular channel numerically gives the lowest PV cell temperature, 317.95 K, with an electrical efficiency of 14.70% and a thermal efficiency of 44.18%. This is because the water velocity in the circular channel can be faster than the other channels.  The circular channel has a thinner boundary layer, so the velocity is maximized, and the heat transfer rate increases.

CFD Simulation of Photovoltaic Thermal (PV/T) Cooling System with Various Channel Geometries Keywords:

CFD Simulation of Photovoltaic Thermal (PV/T) Cooling System with Various Channel Geometries authors

I Gede Febri Bala Antara

Mechanical Engineering Department of Udayana University, Street of Bukit Jimbaran, Badung, Bali ۸۰۳۶۱, Indonesia

Made Sucipta

Mechanical Engineering Department of Udayana University, Street of Bukit Jimbaran, Badung, Bali ۸۰۳۶۱, Indonesia

Ketut Astawa

Mechanical Engineering Department of Udayana University, Street of Bukit Jimbaran, Badung, Bali ۸۰۳۶۱, Indonesia

I Ketut Gede Wirawan

Mechanical Engineering Department of Udayana University, Street of Bukit Jimbaran, Badung, Bali ۸۰۳۶۱, Indonesia

Made Sukrawa

Civil Engineering Department of Udayana University, Street of Bukit Jimbaran, Badung, Bali ۸۰۳۶۱, Indonesia

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