Abstract

This study explores the combination of photovoltaic (PV) panels with a reflector mounted on a building to improve electricity generation. Globally, PV panels have been widely used as a renewable energy technology. In order to obtain more solar irradiance and improve electricity output, this study presents an advanced strategy of a reflector combining PV panels mounted on a building in Calgary, Canada. Based on an experimental database of solar irradiances, the simulation presents an optimal shape designed and tilt angles of the reflector and consequently improves solar radiation gain and electricity outputs. Polished aluminum is selected as the reflector material, and the shape and angle are designed to minimize the interruption of direct solar radiation. The numerical approach demonstrates the improvement in performance using a PV panel tilted at 30°, 45°, 60°, and 75° and a reflector, tilted at 15.5° or allowed to be tilted flexibly. A reflector tilted at 15.5° can improve solar radiation gains, of the panel, by nearly 5.5–9.2% at lower tilt angles and 14.1–21.1% at higher tilt angles. Furthermore, the flexibly adjusted reflector can improve solar radiation gains on the PV panel, by nearly 12–15.6% at lower tilt angles and 20–26.5% at higher tilt angles. A reflector tilted at 15.5° improves the panel’s output electricity on average by 4–8% with the PV panel tilted at 30° and 45° respectively and 12–19% with the PV panel tilted at 60° and 75°, annually. Moreover, a reflector that can be flexibly tilted improves electricity output on average by 9–12% with the PV panel tilted at 30° and 45° and 17–23% with the PV panel tilted at 60° and 75°. Therefore, the utilization of a reflector improves the performance of the PV panel while incurring a relatively low cost.

Highlights

  • Introduction and BackgroundWith our developing industries and growing world population, building energy consumption has increased to maintain peoples’ standard of living

  • This study shows the performance evaluation of solar radiation collection by combining PV panels with an aluminum reflector by local solar irradiance, Calgary, Canada

  • Understanding the determination of the optimal tilt angle of the PV panel in a local area is essential to obtaining solar radiation on the PV panel

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Summary

Introduction

With our developing industries and growing world population, building energy consumption has increased to maintain peoples’ standard of living. Fossil fuel sources have been much more challenging to use in our community because they are the main resources of greenhouse gas and global warming [1,2]. Renewable energy should be utilized in a clean and sustainable manner. In the last 30 years, solar energy has been increasingly utilized as the main renewable source of energy, and the power output technology is efficiently developed by reducing the cost of production [1,2,3]. Compared with other renewable sources, solar energy is accessible, and it can be connected and merged to the buildings and not necessarily in remote places [2,4,5].

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