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Applying static and dynamic test responses for defect prediction in wind turbine blades using a probabilistic approach

机译:应用概率方法对风力涡轮机叶片缺陷预测的静态和动态测试响应

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This paper presents a novel approach in the field of experimental and numerical investigation of mechanical properties of composite structures. It takes into account test data variability resulting from structural dynamic properties measurement. The main goal of the conducted research is to investigate the dynamic and static properties of fiber reinforced composite structure towards assessment of accuracy of the damage detection. Non-destructive experimental and numerical simulation methods are used hereto. In the experimental part static and dynamic test were performed. The dynamic excitation was performed by means of random single point stimuli while the response measurement was done through contact acceleration sensing. In the static test four point bending configuration was implemented. Applied force and strain response was measured. The test results are applied in two ways: for the structural identification of the object and for non-deterministic updating of the numerical model according to a range of experimental models obtained from test. The sources of the test data variabilities were related to the specimen-to-specimen and test-to-test of the investigated object. Non-deterministic model updating and validation included uncertainties of its parameters by means of probabilistic methods. A number of variable test modal models were statistically assessed to investigate impact of variability source onto clarity of damage identification. Then, for each of investigated specimens an individual damage scenario was introduced. Two different vibration based methods were applied for the damage detection. The results are presented and compared. The research was conducted in the context of the FP7 project PROND.
机译:本文介绍了复合结构力学性能实验性和数值研究领域的新方法。它考虑了由结构动态特性测量产生的测试数据变化。进行研究的主要目标是探讨纤维增强复合结构的动态和静态性能,以评估损伤检测的准确性。使用非破坏性实验和数值模拟方法。在实验部分中进行静态和动态测试。通过随机单点刺激进行动态激励,而通过接触加速度感测完成响应测量。在静态测试中,实现了四点弯曲配置。测量施加的力和应变响应。测试结果以两种方式应用:用于对象的结构识别和根据从测试中获得的实验模型的一系列实验模型进行数值模型的非确定性更新。测试数据变量的来源与调查对象的标本和试验进行有关。非确定性模型更新和验证通过概率方法包括其参数的不确定性。统计评估了许多可变测试模态模型,以研究变异源对损伤识别清晰度的影响。然后,对于每个调查的标本,引入了个体损坏方案。施加两种不同的基于振动的方法用于损坏检测。结果呈现并进行比较。该研究是在FP7项目Prond的背景下进行的。

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