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An experimental analysis of the effect of icing on Wind turbine rotor blades

机译:结冰对风力发电机转子叶片影响的实验分析

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Wind Turbine is highly nonlinear plant whose dynamics changes with change in aerodynamics of the rotor blade. Power extracted from the wind turbine is a function of coefficient of power (Cp). Wind turbine installed in the cold climate areas has an icing on its rotor blade which might change its aerodynamics. This paper is an experimental investigation of the aerodynamic changes occur due to effect of ice accumulated on the rotor blades of wind turbine. We have tested three small scale model of the NREL's 5MW rotor blade with same profile but simulated different icing effect on them. These models are printed with 3D printer and tested one by one in a Wind Tunnel. Lift, drag and moment coefficients are calculated from the measured experimental data and program WT-Perf based on blade-element momentum (BEM) theory is used to predict the performance of wind turbine. Cp curves generated from the test are compared with each other to see the effect of icing effect however Cp curve of the clean blade generated from the experiment is compared with the Cp curve from the NREL's 5MW rotor blade airfoil to see the effect of the limitation of the project. It is clear from the results that the rotor blade with lead edge ice has less peak value and shape of the Cp curve is unchanged as compared to clean blade. However the blade with lead and trail edge ice has reduced peak value but shape of the Cp curve is changed as compared to clean and lead edge ice blade.
机译:风力涡轮机是高度非线性的设备,其动力学随着转子叶片的空气动力学的变化而变化。从风力涡轮机提取的功率是功率系数(Cp)的函数。安装在寒冷气候地区的风力涡轮机的转子叶片上会结冰,这可能会改变其空气动力学特性。本文是对由于风力涡轮机转子叶片上积聚的冰的影响而发生的空气动力学变化进行实验研究。我们测试了NREL的5MW转子叶片的三个小型模型,它们具有相同的轮廓,但是模拟了它们的结冰效果。这些模型使用3D打印机打印,并在风洞中逐一测试。根据测得的实验数据计算升力,阻力和力矩系数,并基于叶片要素动量(BEM)理论的程序WT-Perf用于预测风力涡轮机的性能。将测试生成的Cp曲线相互比较以查看结冰效果,但是将实验生成的清洁叶片的Cp曲线与NREL的5MW转子叶片翼型的Cp曲线进行比较,以了解限制结冰的效果。该项目。从结果可以明显看出,与清洁叶片相比,带有前缘冰的转子叶片具有较小的峰值,并且Cp曲线的形状不变。但是,与前缘和前缘冰刀相比,具有前缘和后缘冰刀的刀片的峰值降低,但Cp曲线的形状发生了变化。

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