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LOW-SPEED WIND TURBINE DESIGN AND FABRICATION

机译:低速风轮机的设计与制造

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摘要

A wind energy has getting more attention due to its free-source, its nature of renewable energy, and free of carbon dioxide emission. As the wind map varies area to area, the wind energy collection strongly depends on the site. In order to maximize the amount of energy captured, an improved, low airspeed wind turbines are demanded to be designed. A wind turbine studied was created using the NACA 4412 foil shape and a decreasing chord length with increasing distance from the center of the turbine. The pitch was also varied along the span of the blade. The blade was analyzed using CFD and tested in a wind tunnel facility. The turbine was connected to a motor which was connected to a resistor and current and voltage meters. Using the voltage and current data at a prescribed rate of rotation, the model generated decent power output. The study focused mostly for a low-speed wind up to 2m/s (or 3.4 mph). For practical use the turbine would need to be scaled to a greater size and a proportional-integral-derivative controller (PID controller) that can generate higher resistance would need to be employed.
机译:风能由于其自由来源,可再生能源的性质以及无二氧化碳排放而受到越来越多的关注。由于风图的区域不同,因此风能的收集在很大程度上取决于该地点。为了使捕获的能量最大化,需要设计一种改进的低空速风力涡轮机。使用NACA 4412箔形状和随着距涡轮机中心距离的增加而减小的弦长来创建研究的风力涡轮机。螺距也沿叶片的跨度变化。使用CFD分析叶片,并在风洞设施中进行测试。涡轮机连接到电动机,电动机连接到电阻器以及电流和电压表。使用规定转速下的电压和电流数据,该模型产生了不错的功率输出。该研究主要针对低速风,最高速度为2m / s(或3.4 mph)。在实际应用中,需要将涡轮机按比例放大到更大的尺寸,并且将需要使用可产生更高阻力的比例积分微分控制器(PID控制器)。

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