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Optimization of a design code for wind-turbine rotor blades in fatigue

机译:风力涡轮机转子叶片疲劳设计规范的优化

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摘要

A reliability-based calibration of a design code for wind-turbine rotor blades is presented. Design against fatigue failure in flapwise bending is considered. The calibration is performed by means of a numerical optimization technique in conjunction with probabilistic and deterministic models for load and resistance. The probabilistic models allow for predictions of the reliability against fatigue failure. The deterministic models express design load and design resistance in terms of characteristic values and partial safety factors. The code calibration consists of determination of the partial safety factors such that - over a specified scope of code - designs with reliabilities with minimum deviations from some prescribed target reliability result when the deterministic models are applied with this particular set of partial safety factors. The scope of code consists of a number of representative design cases, each defined as a particular combination of wind turbine, location and blade material. Emphasis is placed on demonstration of the code calibration principles and a proper formulation of the code format.
机译:提出了基于可靠性的风轮机转子叶片设计规范校准。考虑抗折翼弯曲疲劳破坏的设计。通过数字优化技术结合负载和电阻的概率和确定性模型来执行校准。概率模型可以预测抗疲劳失效的可靠性。确定性模型根据特征值和部分安全系数来表达设计负荷和设计阻力。代码校准包括确定部分安全系数,这样,当在确定的模型中应用这组部分安全系数时,在指定的代码范围内,设计与某些规定的目标可靠性结果的偏差最小。代码范围由许多代表性的设计案例组成,每个案例都定义为风力涡轮机,位置和叶片材料的特定组合。重点放在代码校准原理的演示和代码格式的正确制定上。

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