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DETERMINING EQUIVALENT DAMAGE LOADING FOR FULL-SCALE WIND TURBINE BLADE FATIGUE TESTS

机译:确定全尺寸风力涡轮机叶片疲劳试验的等效损伤

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This paper describes a simplified method for converting wind turbine rotor design loads into equivalent-damage, constant-amplitude loads and load ratios for both flap and lead-lag directions. It is an iterative method that was developed at the National Renewable Energy Laboratory (NREL) using Palmgren-Miner's linear damage principles. The general method is unique because it does not presume that any information about the materials or blade structural properties is precisely known. According to this method, the loads are never converted to stresses. Instead, a family of M-N curves (moment vs. cycles) is defined with reasonable boundaries for load-amplitude and slope. An optimization program iterates and converges on the constant amplitude test load and load ratio that minimizes the sensitivity to the range of M-N curves for each blade section. We constrained the general method to match the NedWind 25 design condition for the Standards, Measurements, and Testing (SMT) blade testing program. SMT participants agreed to use the fixed S-N slope of m = 10 from the original design to produce consistent test-loads among the laboratories. Unconstrained, the general method suggests that slightly higher test loads should be used for the NedWind 25 blade design spectrum. NedWind 25 blade test loads were computed for lead-lag and flap under single-axis and two-axis loading.
机译:本文介绍了一种简化的方法,用于将风力涡轮机转子设计载荷转换成等效损坏,恒定幅度载荷和负载比,用于翼片和引线方向。它是一种迭代方法,在国家可再生能源实验室(NREL)在国家可再生能源实验室(NREL)的线性伤害原则开发。一般方法是独特的,因为它不认为是关于材料或叶片结构特性的任何信息是精确的人知。根据该方法,负载永远不会转换为应力。相反,为负载幅度和斜率的合理边界定义了一个M-N曲线(时刻与循环)。优化程序迭代并收敛于恒定幅度测试负载和负载比,使每个刀片部分的M-N曲线范围的灵敏度最小化。我们约束了匹配NEDWind 25设计条件的一般方法,用于标准,测量和测试(SMT)刀片测试程序。 SMT参与者同意使用M = 10的固定S-N斜率从原始设计中产生一致的实验室测试负载。无约束,通用方法表明,略高的测试载荷应用于Nedwind 25叶片设计谱。在单轴和双轴负载下计算Nedwind 25刀片测试载荷,用于引导滞后和皮瓣。

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