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This project aims to increase energy generation by utilizing 3D geometry in solar panel design, reducing the overall carbon footprint. The stationary design ensures easy installation. Key design considerations include implementing reflectors, exploring different geometries, and ensuring compliance with environmental regulations. The proposed design incorporates poly and mono-crystalline silicon photovoltaic cells. The objectives are to effectively utilize renewable energy, minimize costs, and maximize energy density per base area.
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Problem Statement Increase energy generation by utilizing 3D geometry. Reducing overall carbon footprint. Stationary design for easy installation and convenience. Design Considerations Implement reflectors Explore different geometries Uphold environmental regulations Material: poly and mono- crystalline silicon photovoltaic cell Proposed Design 3-DIMENSIONAL SOLAR PANEL Objectives Effectively utilize renewable and clean energy Minimize cost of solar panel applications Maximize energy density per base area Responsibilities Christian Bernard: Parts selection, CAD simulations, Power generation calculations KarelJieTjoeFoek: CAD design, Specific geometric calculations Muhammad Arif: Material selection, Geometric calculations Motivation Reduce the dependence on fossil fuels Reduce electricity costs Design a portable solar panel Reach remote areas Timeline Team Members Faculty Advisor: Dr. Bilal El-Zahab Karel JieTjoeFoek Christian Bernard Muhammad Arif