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Characteristics of ice accretions on blade of the straight-bladed vertical axis wind turbine rotating at low tip speed ratio

机译:低叶尖速比旋转的直叶片垂直轴风力发电机叶片上的积冰特征

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摘要

Icing on blade surface of wind turbine greatly affects the performance of wind turbine which becomes a very serious problem for the wind turbine installed in cold and wet regions both for larger-scale wind turbine and small-scale ones. The Straight-bladed Vertical Axis Wind Turbine (SB-VAWT) is a kind of lift-type VAWT which is widely used for small-scale wind power generation. Icing on blade of SB-VAWT will also affect both the starting performance and out power performance. To verify the icing characteristics of blade rotating at low tip speed ratio of the SB-VAWT during its starting stage, wind tunnel icing experiments have been carried out on a rotor with blade airfoil of NACA0018 in a wind tunnel icing experimental system by using natural low temperature in winter proposed in this study. The icing distributions were recorded by a high speed camera at different tip speed ratios from 0 to 1. The weight of icing on blade was also measured. Furthermore, the icing area ratio and icing rate were calculated and analyzed. The main results show that the ice accretion on a rotating blade of SB-VAWT at low tip speed ratio is quite different from the blade in static condition. The icing distributed on the whole surface of blade and the icing area increases along blade airfoil outline with the increasing of icing time and rotational speed. The whole weight of icing on all blades of wind turbine increased with the increasing of blade number.
机译:风力涡轮机叶片表面上的结冰极大地影响了风力涡轮机的性能,这对于在大型和小型风力涡轮机中安装在寒冷和潮湿地区的风力涡轮机来说都是一个非常严重的问题。直叶片垂直轴风力发电机(SB-VAWT)是一种升降式VAWT,广泛用于小型风力发电。 SB-VAWT刀片上的结冰也会影响启动性能和输出功率性能。为了验证SB-VAWT在启动阶段以低速比旋转的叶片的结冰特性,在风洞结冰实验系统中,使用自然低速对具有NACA0018叶片翼型的转子进行了风洞结冰实验。这项研究提出了冬季温度。用高速照相机以0至1的不同叶尖速比记录结冰分布。还测量了刀片上的结冰重量。此外,计算并分析了结冰面积比和结冰率。主要结果表明,在低速比下,SB-VAWT旋转叶片上的积冰与静态条件下的叶片有很大差异。随着结冰时间和转速的增加,分布在叶片整个表面上的结冰和结冰面积沿叶片翼型轮廓增加。随着叶片数量的增加,风力涡轮机所有叶片的总糖霜重量增加。

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