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Reliability-Based Design of Wind Turbine Blades

机译:基于可靠性的风力机叶片设计

摘要

Reliability-based design of wind turbine blades requires identification of the important failure modes/limit states along with stochastic models for the uncertainties and methods for estimating the reliability. In the present paper it is described how reliability-based design can be applied to wind turbine blades. For wind turbine blades, tests with the basic composite materials and a few full-scale blades are normally performed during the design process. By adopting a reliability-based design approach, information from these tests can be taken into account in a rational way during the design process. In the present paper, a probabilistic framework for design of wind turbine blades are presented and it is demonstrated how information from tests can be taken into account using the Maximum-Likelihood method and Bayesian statistics. In a numerical example, the reliability is estimated for a wind turbine blade in both ultimate and fatigue limit states. Information from tests is used to formulate the stochastic models used in the limit state equations. Partial safety factors for use in traditional deterministic design are estimated using the stochastic models.
机译:基于可靠性的风力涡轮机叶片设计需要识别重要的故障模式/极限状态,以及用于不确定性的随机模型和评估可靠性的方法。在本文中,描述了如何将基于可靠性的设计应用于风力涡轮机叶片。对于风力涡轮机叶片,通常会在设计过程中使用基本复合材料和一些全尺寸叶片进行测试。通过采用基于可靠性的设计方法,可以在设计过程中以合理的方式考虑来自这些测试的信息。在本文中,提出了一种用于风力涡轮机叶片设计的概率框架,并演示了如何使用最大似然法和贝叶斯统计方法来考虑来自测试的信息。在数值示例中,在极限和疲劳极限状态下都估计了风力涡轮机叶片的可靠性。来自测试的信息用于制定极限状态方程式中使用的随机模型。传统确定性设计中使用的部分安全系数是使用随机模型估算的。

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