Performance Characteristics of Savonius Wind Turbines With Variations Air Gaps in Supporting the Development of Renewable Energy

Baktiyar Mei Hermawan
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Abstract

To overcome the occurrence of an energy crisis in the future, an innovation / invention of energy that is environmentally friendly and energy sources will not run out in the future. Energy sources that are environmentally friendly and their potential when developed is very large, one of which is energy sources derived from wind energy. This study aims to determine the effect of wind speed on the performance of wind turbines. To find out the performance characteristics of wind turbines with variations in air gaps. The research method begins with the design / design of the wind turbine, then continues the manufacturing stage, the assembling and installation stage, the testing of tools and analysis, the tests carried out include testing the performance characteristics of the wind turbine. The parameters measured in this study are rotation, torque as well as calculating the kinetic power produced, TSR and CP. The test results conducted showed that the 200 mm air gap Savonius wind turbine with a value of CP = 0.02480-0.15658 had optimum work at low wind speeds (4 m / s). Meanwhile, the 170 mm airborne Savonius wind turbine with a value of CP = 0.00593-0.14668 has optimum work at high wind speeds (8 m / s to 9 m / s). Keywords- wind turbine savonius, air gap, coefficent of power.
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支持可再生能源发展的不同气隙Savonius风力发电机性能特征
为了克服未来能源危机的发生,环保能源的创新/发明在未来不会耗尽。环境友好的能源及其开发潜力非常大,其中之一是风能能源。本研究旨在确定风速对风力涡轮机性能的影响。了解气隙变化情况下风力涡轮机的性能特征。研究方法从风力涡轮机的设计/设计开始,然后继续到制造阶段、组装和安装阶段、工具测试和分析,所进行的测试包括测试风力涡轮机的性能特征。本研究中测量的参数包括旋转、扭矩以及产生的动能、TSR和CP。测试结果表明,CP值为0.02480-0.15658的200mm气隙Savonius风力涡轮机在低风速(4m/s)下具有最佳工作。同时,CP值为0.00593-0.14668的170mm机载Savonius风力涡轮机在高风速(8m/s至9m/s)下具有最佳工作。关键词-风力涡轮机savonius,气隙,功率系数。
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