由陀螺仪系统驱动的发电机-一种理论方法

L. Gherman, M. Pearsica
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引用次数: 0

摘要

我们社会的发展现在依赖于电能,对电力的需求每年都在增加。由于传统发电厂向大气中释放大量的二氧化碳以及对气候的负面影响,必须开发新的发电方式。陀螺仪由一个质量为m的旋转飞轮组成,该飞轮安装在一个悬架上,可以使飞轮的轴指向任何方向。在此分析中,轴的一端由位于旋转飞轮质心距离R处的塔支撑。为了在这种低速下产生电能,应该采用与风力发电机相同的方法。在这种情况下,风和螺旋桨被陀螺仪系统和引力所取代。基于角动量守恒,重力吸引可以用来产生足够强的进动,以提供必要的能量和扭矩来启动类似于风力发电机的发电机。而不是从这个动能中回收能量,我们可以使用由重力吸引产生的旋进来产生必要的动能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ELECTRIC GENERATOR POWERED BY A GYROSCOPIC SYSTEM - A THEORETICAL APPROACH
The development of our society now depends on electrical energy and the demand for electrical power increases yearly. Due to the vast amount of carbon dioxide released in the atmosphere by conventional power plants and the negative influence on the climate, new ways of producing electricity must be developed. A gyroscope consists of a spinning flywheel of mass m mounted in a suspension frame that allows the flywheel’s axle to point in any direction. In this analysis, one end of the axle is supported by a pylon situated at a distance R from the center of mass of the spinning flywheel. In order to generate electrical energy at this low speed, the same approach should be used as in wind power electrical generators. In this case, the wind and propeller are substituted by a gyroscopic system and gravitational attraction. Based on the conservation of angular momentum, the gravitational attraction can be used to create a precession strong enough to provide the energy and torque necessary to activate an electric generator similar to those in wind power generators. Instead of recovering the energy from this kinetic energy, we can use the precession rotation created by gravitational attraction to create the necessary kinetic energy.
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