In this paper, the theoretical discussion is a proposal to generate electricity by utilizing the gravitational potential energy in a vacuum chamber. The paper examines the way in which the efficiency of a gravitational energy conversion system can be enhanced by removing air resistance. Incorporated by modeling the conversion of potential energy to mechanical and electrical energy, the paper contrasts the performance under normal atmospheric conditions and under near-vacuum conditions. It uses known physical equations in the analysis of energy output, drag forces, and efficiency of the system.Findings indicate that working in a vacuum can greatly decrease the energy losses due to air resistance, which can then be used to transfer energy more efficiently. Other design considerations, scalability, and practical limitations such as the difficulty of maintaining vacuum conditions and system costs are also touched upon in the paper. Although the study does not include experimental validation, it highlights a potential direction for improving gravity-based energy systems and contributes to ongoing discussions in sustainable and renewable energy technologies.
Mohammed Ashfaq Ahmed Nafis (Sat,) studied this question.