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A method of determining test load for full-scale wind turbine blade fatigue tests

机译:一种确定用于全尺寸风力涡轮机叶片疲劳试验的测试负荷的方法

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摘要

Full-scale fatigue test is an effective method for validating the fatigue performance of wind turbine blade. Its primary problem is how to design the test load. The conventional approach to determine test load requires a complicated and time-consuming process. Thus, a simplified method for directly converting load spectrum of blade into test load is proposed in this paper. Firstly, beam theory is used to obtain the relationship between stress, strain and bending moment of blade cross section. Based on the assumption of local stress concentration and linear relationship between stress and strain, M-N curves (applied moment vs. allowable number of cycles to failure) is defined. Secondly, based on Miner's linear cumulative damage theory and constant life diagram, the equivalent fatigue cumulative damage of load spectrum which is equal to the damage of full-scale fatigue test is obtained. Then, in the case of the selected test load ratio and cycles, the mean and amplitude of test load can be solved. Finally, the validity of the proposed method is verified by an illustrative example. The result indicates that the error of the calculated results between this method and the traditional method is close to 5 %, and it can be used for fatigue test and improve the efficiency of test load design.
机译:全尺寸疲劳试验是验证风力涡轮机叶片的疲劳性能的有效方法。其主要问题是如何设计测试负载。确定测试负载的传统方法需要复杂和耗时的过程。因此,本文提出了一种将叶片的载荷谱直接转换为试验负载的简化方法。首先,光束理论用于获得叶片横截面的应力,应变和弯矩之间的关系。基于应力和应变之间的局部应力浓度和线性关系的假设,定义了M-N曲线(施加的力矩与允许的循环循环)。其次,基于矿工线性累积损伤理论和恒定寿命图,获得了等于满量疲劳试验损伤的负载谱的等效疲劳累积损伤。然后,在所选择的测试负荷比和循环的情况下,可以解决测试负载的平均值和幅度。最后,通过说明性示例验证所提出的方法的有效性。结果表明,该方法与传统方法之间计算结果的误差接近5%,可用于疲劳试验并提高测试负载设计的效率。

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