Analysis of Blade Quantity Variations on Horizontal Axis Wind Turbine Type Taperless Airfoil SG6043 Using Blade Element Momentum (BEM)

None Pratama Ricky Novianto, None Fahrudin Fahrudin, None Damora Rhakasywi, None Tatik Juwairiyah
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Abstract

The design of taperless blades using the SG6043 Airfoil with different blade quantities through BEM simulation method is expected to serve as a reference for determining the design that yields the best operational efficiency. Simulation results show that the highest Cp value for the Taperless blade design is achieved with a variation of 3 wind turbine blades, resulting in a Cp value of 0.45 in the BEM simulation. The highest Cp value for the Taperless blade design with 4 wind turbine blades is 0.48 in the BEM simulation. Meanwhile, the highest Cp value for the Taperless blade design with 5 wind turbine blades is 0.47 in the BEM simulation. For low TSR values within the range of 1-4, turbines with 5 blades perform the best among various blade quantity variations, resulting in the highest Cp value. On the other hand, for high TSR values within the range of 5-10, turbines with the fewest blades, specifically 3 blades, achieve the highest Cp value.
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基于叶素动量(BEM)的水平轴风力机型无锥度翼型SG6043叶片数量变化分析
采用不同叶片数量的SG6043翼型,通过BEM模拟方法进行无锥度叶片的设计,有望为确定产生最佳运行效率的设计提供参考。仿真结果表明,无锥度叶片设计的最高Cp值为3片风力叶片的变化,BEM仿真的Cp值为0.45。在BEM模拟中,4片叶片的无锥度叶片设计的最高Cp值为0.48。同时,在BEM模拟中,5片风力机叶片的无锥度叶片设计的最高Cp值为0.47。当TSR值在1 ~ 4范围内较低时,5片叶片的涡轮在各种叶片数量变化中表现最好,因此Cp值最高。另一方面,当TSR值在5-10范围内较高时,叶片数最少的涡轮,即3片叶片,其Cp值最高。
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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