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Power Optimization of NACA 0018 Airfoil Blade of Horizontal Axis Wind Turbine by CFD Analysis

机译:CFD分析功率优化水平轴风风力涡轮机的水平轴线叶片

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摘要

The country or region where energy production is based on imported coal or oil will become more self-sufficient by using alternatives such as wind power. Electricity produced by the wind produces no CO2 emissions and therefore does not contribute to the greenhouse effect. Wind energy is relatively labour intensive and thus creates many jobs. Wind energy is the major alternative of conventional energy resources. A wind turbine transforms the kinetic energy in the wind to mechanical energy in a shaft and finally into electrical energy in a generator. The turbine blade is the most important component of any wind turbine. In this article is considered the single airfoil National Advisory Committee for Aeronautics (NACA) 0018 and a computational fluid dynamics (CFD) analysis is done at different blade angles 0 degrees, 10 degrees, 15 degrees, and 30 degrees with a wind velocity of 4 m/s. The analysis results show that a blade angle of 10 degrees gives the best possible power and pressure and velocity distributions are plotted for every case.
机译:能源生产基于进口煤炭或油的国家或地区将通过使用风力等替代品变得更加自足。风力产生的电力不会产生二氧化碳排放,因此不会导致温室效应。风能相对劳动密集型,因此创造了许多工作。风能是传统能源资源的主要替代方案。风力涡轮机将风中的动能转变为轴中的机械能,最后进入发电机中的电能。涡轮叶片是任何风力涡轮机最重要的组成部分。在本文中被认为是单一亚机架国家航空航空公司(NACA)0018咨询委员会,并且计算流体动力学(CFD)分析在不同的刀片角度0度,10度,15度和30度,风速为4多发性硬化症。分析结果表明,叶片角度为10度,给出了最佳功率,并且为每种情况绘制了压力和速度分布。

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