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A tip deflection calculation method for a wind turbine blade using temperature compensated FBG sensors

机译:使用温度补偿FBG传感器的风轮机叶片叶尖挠度计算方法

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The tip deflections of wind turbine blades should be monitored continuously to prevent catastrophic failures of wind turbine power plants caused by blades hitting the tower. In this paper, a calculation method for wind turbine blade tip deflection is proposed using a finite difference method based on arbitrary beam bending and moment theory using measured strains. The blade strains were measured using fiber optic Bragg grating sensors. In order to confirm this method, a 100kW composite wind turbine blade was manufactured with epoxy molded fiber optic Bragg grating (FBG) sensors installed in the shear web of the blade. A number of these sensors, normal FBG probes, were fabricated to only measure strains and the other sensors, temperature compensated FBG probes, were prepared to also measure strain and temperature. Because the output signals of FBG sensors are dependent on strains as well as temperatures, the sensor output signals should be compensated by the temperatures to obtain accurate strains. These FBG sensors were attached on the lower and upper parts of the web at one meter intervals throughout the entire length of the blade. To evaluate the measurement accuracy of the FBG sensors, conventional electrical strain gauges were also bonded onto the surface of the web beside each FBG sensor. By performing a static load test of the blade, the calculated tip deflection of the blade was well determined within an average error of 2.25%.
机译:应当连续监测风力涡轮机叶片的尖端变形,以防止由于风力涡轮机叶片撞击塔架而导致的灾难性故障。本文提出了一种基于有限梁差分法的风轮机叶片叶尖挠度计算方法,该方法基于任意梁弯曲和力矩理论,并利用测得的应变。使用光纤布拉格光栅传感器测量叶片应变。为了确认该方法,制造了一个100kW的复合风力涡轮机叶片,在叶片的剪切腹板上安装了环氧模制的光纤布拉格光栅(FBG)传感器。制造了许多这样的传感器,即普通的FBG探头,仅用于测量应变,而其他传感器(温度补偿的FBG探头)也已准备用于测量应变和温度。由于FBG传感器的输出信号取决于应变以及温度,因此传感器输出信号应通过温度进行补偿以获得准确的应变。这些FBG传感器在叶片的整个长度上以一米的间隔连接到卷筒纸的下部和上部。为了评估FBG传感器的测量精度,还将常规的电气应变仪粘合到每个FBG传感器旁边的纤维网表面上。通过对叶片进行静态载荷测试,可以在2.25%的平均误差范围内很好地确定叶片的计算出的叶尖挠度。

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