Float & Flow: 24/7 Pollution-Free Green Energy EV Charging System

Prof. Ashish. K. Duchakke, Pooja Nirgude, Kartiki Dhore, Vaibhavi Kale, Mayuri thakare, Rani Kalamkar

Abstract


The rapid growth of electric vehicles and modern electrical applications has increased the demand for clean and sustainable energy sources. Conventional electricity generation methods mainly depend on fossil fuels, which lead to environmental pollution and depletion of natural resources. To overcome these challenges, renewable energy technologies have become an important solution for producing eco-friendly electricity. The proposed project, Float & Flow – 24/7 Pollution-Free Green Energy EV Charging System, focuses on generating continuous electrical power by integrating solar energy with stored water energy. The main objective of this system is to provide a reliable and sustainable energy source that can support small-scale electricity generation and EV charging, especially in rural or remote areas where grid electricity is unstable or unavailable. The system works on a hybrid renewable energy concept in which solar energy is used for pumping water during the daytime, and the stored water energy is later used for electricity generation. This system demonstrates an efficient method of combining two renewable energy sources to ensure continuous power availability. Solar energy performs the pumping function, while the stored water energy enables electricity generation even during non-sunlight hours. Therefore, the Float & Flow system improves the reliability of renewable energy systems and reduces dependency on conventional power sources. In conclusion, the Float & Flow renewable energy system offers a practical and sustainable approach for continuous power generation by utilizing solar energy and stored water energy. The project demonstrates the potential of hybrid renewable systems to support future green energy infrastructure and sustainable development.

KEYWORDS: EV Charging, Renewable Energy, Solar Energy, Float & Flow System, Green Energy, Sustainable Development, Hybrid Power System


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