Implementation of Permanent Magnet Propelling Phenomenon in Traditional Vertical Axis Wind Turbine System to Enhance the Performance and Efficiency

S. Hegde, Dr. Ramachandra C G, Dr. Nagesh S N, Dr. Prashanth Pai M
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Abstract

It is generally acknowledged that the energy as we now use, will not be adequate to meet the needs of all people on the planet in future, hence cleaner and more plentiful alternative energy sources are required which may be in the form of hybrid energy also. Renewable energy sources will certainly become more prominent. Modern civilizations need cheap, plentiful energy to survive, therefore, it is crucial for human civilization to create a sustainable, affordable, and environmentally benign alternative sources of energy. The global energy dilemma may have an efficient solution in the form of wind power. In current state of affairs, the air could seem like insignificant to any or all. However, we tend to all grasp that, the planet has shaped up with associate uneven surface, which suggest that the sunrays could strike these surfaces with variable intensities at numerous spot on its uneven surface. This creates associated degree of unequal degree of heating of the earth surface, that which causes variation in part of atmospheric pressure thereon. Then it leads to wind. The Kinetic energy of these air molecules is nothing but wind energy. A mechanical mechanism known as a wind turbine which transforms, kinetic energy which is there in the air around it into the required form of mechanical energy. Here in this research, we focused on the repellent qualities of permanently magnetized objects with similar poles. These innate qualities of magnetic propulsion are used here as an energy sources. Due to the inclusion of this components like magnetic repulsion, our VAWT system will operate more effectively even at lower wind speeds circumstance also. This magnet will produce a repulsive force that will add various sorts of kinetic energies to the wind turbines as they convert wind energy's kinetic energy of into the necessary mechanical power when it’s employed as an extra source of energy in a VAWT.
利用永磁推进现象在传统垂直轴风力发电系统中提高性能和效率
人们普遍认为,我们现在使用的能源将不足以满足未来地球上所有人的需求,因此需要更清洁、更丰富的替代能源,这种替代能源也可能以混合能源的形式出现。可再生能源肯定会更加突出。现代文明需要廉价、充足的能源才能生存,因此,创造一种可持续、负担得起、对环境无害的替代能源对人类文明至关重要。全球能源困境可能有一个有效的解决方案,那就是风力发电。在目前的情况下,空气对任何人或所有人来说都是微不足道的。然而,我们都倾向于认为,地球的表面是不平坦的,这表明太阳可以在不平坦的表面上以不同的强度照射到这些表面上的许多点。这就造成了地球表面受热程度不等的相关程度,从而引起地球上部分大气压力的变化。然后就会产生风。这些空气分子的动能就是风能。一种被称为风力涡轮机的机械装置,它将周围空气中的动能转化为所需形式的机械能。在这项研究中,我们专注于具有相似磁极的永久磁化物体的驱避特性。这些磁性推进的固有特性在这里被用作能源。由于包含这些组件,如磁排斥,我们的VAWT系统将更有效地运行,即使在较低的风速情况下也。当风力涡轮机将风能的动能转化为必要的机械动力时,这个磁铁会产生一种排斥力,当它被用作VAWT的额外能源时,它会给风力涡轮机增加各种动能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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