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Öğe EXPERIMENTAL INVESTIGATING OF THE WIND ENERGY GENERATION FROM VEHICLE MOVEMENT ON HIGHWAYS USING THE DOUBLE TURBINE SYSTEM(2023-12) Kazal, Osama Ahmed KazalRenewable energy has seen significant development in the past decade, with a focus on methods of displacing fossil fuels and providing clean energy through horizontal and vertical axis turbines. This study investigates the potential to harvest and save energy from highways, a largely untapped source that could contribute to reducing reliance on fossil fuels and grid-based electricity. The study proposes the double turbine model that combines the Savonius and Darrieus vertical wind turbines to maximize energy generation. The model was designed using SolidWorks 2023 software and manufactured using a 3D printer with environmentally friendly PLA material. Experiments were conducted to evaluate the performance of the double turbine under different conditions. Internal tests compared the double turbine to the Savonius and Darrieus turbines, and explored different distances between the Savonius and Darrieus blades. External tests evaluated the performance of the double turbine at different heights and distances from the highway. Final tests investigated the power generated by the double turbine in response to different types of vehicles. The results of the internal tests showed that the double turbine outperformed the Savonius and Darrieus turbines in terms of power generation. The double turbine also generated more power when the distance between the Savonius and Darrieus blades was 15 cm. The results of the external tests showed that the double turbine performed best at a height of 100 cm from the ground and a distance of 100 cm from the highway. The double turbine also generated the most power when trucks passed in front of it, reaching a maximum power of 50 W. The results of this study demonstrate the potential of the double turbine model to generate clean and renewable energy from highways. The double turbine outperformed traditional turbines, and its versatility suggests that it could be used in a variety of applications. ?