Modified free energy generation using permanent Neodymium Magnet based on Bedini with Maxwell and Lorenz gauge conditions

Qeios Pub Date : 2024-05-20 DOI:10.32388/os9v96
Sahar Rahim, Haseeb Ahmed, Sohail Ahmad
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Abstract

An efficient, reliable, and real-time electricity generator is proposed by keeping in view the constraints, related to the electricity generation cost, resource reservoirs, greenhouse gas emission, energy storage, and power demand for a pre-defined residential area. Paramount importance is given to the rotor's design; coupled with movable neodymium magnets to increase the harvester's life span and system's net revenue. For the amplification in the stator output, a cost-effective approach is adopted that is based on the parallel winding of the bifilar coil. Furthermore, the coefficient of performance factor for the Bedini's smart school girl circuit based electricity harvester is modified by aiding the concepts of radiant energy incorporated with the electromagnetic phenomenon. Moreover, the mathematical model is formulated by the Maxwell equations using the Lorenz gauge condition to capture free vacuum energy from the environment. For the investigation, analysis, and corroboration of the proposed design, results are reported after performing extensive numerical computations and a comprehensive comparison between the original and modified design is stated in detail.
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利用基于贝迪尼与麦克斯韦和洛伦兹量规条件的永久钕磁铁产生修正自由能
考虑到发电成本、资源储备、温室气体排放、能源储存以及预定住宅区的电力需求等相关限制因素,我们提出了一种高效、可靠和实时的发电机。转子的设计至关重要,再加上可移动的钕磁铁,可以延长收割机的使用寿命,增加系统的净收入。为了放大定子输出,采用了一种基于双纤丝线圈并联绕组的经济有效的方法。此外,通过将辐射能概念与电磁现象相结合,对基于贝迪尼智能女学生电路的电力收集器的性能系数进行了修改。此外,数学模型是通过麦克斯韦方程,利用洛伦兹规条件来捕捉环境中的自由真空能。为了调查、分析和证实所提出的设计,在进行大量数值计算后报告了结果,并详细说明了原始设计和改进设计之间的综合比较。
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