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Towards a digital twin realization of the blade system design study wind turbine blade

机译:朝向刀片系统设计研究风力涡轮机叶片的数字双床实现

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This paper describes the application of a novel virtual prototyping methodology to wind turbine blade design. Numeric modelling data and experimental data about turbine blade geometry and structural/dynamical behaviour are combined to obtain an affordable digital twin model useful in reducing the undesirable uncertainties during the entire turbine lifecycle. Moreover, this model can be used to track and predict blade structural changes, due for example to structural damage, and to assess its remaining life. A new interactive and recursive process is proposed. It includes CAD geometry generation and finite element analyses, combined with experimental data gathered from the structural testing of a new generation wind turbine blade. The goal of the research is to show how the unique features of a complex wind turbine blade are considered in the virtual model updating process, fully exploiting the computational capabilities available to the designer in modern engineering. A composite Sandia National Laboratories Blade System Design Study (BSDS) turbine blade is used to exemplify the proposed process. Static, modal and fatigue experimental testing are conducted at Clarkson University Blade Test Facility. A digital model was created and updated to conform to all the information available from experimental testing. When an updated virtual digital model is available the performance of the blade during operation can be assessed with higher confidence.
机译:本文介绍了一种新颖的虚拟原型方法对风力涡轮机叶片设计的应用。组合了关于涡轮机叶片几何和结构/动态行为的数值建模数据和关于涡轮机叶片几何和结构/动态行为的实验数据,以获得实惠的数字双模型,可用于降低整个涡轮机生命周期内的不期望的不期望。此外,该模型可用于跟踪和预测叶片结构变化,例如结构损坏,并评估其剩余寿命。提出了一种新的互动和递归过程。它包括CAD几何生成和有限元分析,结合了从新一代风力涡轮机叶片的结构测试收集的实验数据。该研究的目标是展示如何在虚拟模型更新过程中考虑复杂风力涡轮机刀片的独特功能,充分利用设计师在现代工程中可用的计算能力。综合桑迪亚国家实验室刀片系统设计研究(BSD)涡轮叶片用于举例说明所提出的过程。在克拉克森大学刀片测试设施进行了静态,模态和疲劳实验测试。创建和更新数字模型,以符合实验测试可获得的所有信息。当更新的虚拟数字模型可用时,可以以更高的置信度来评估操作期间刀片的性能。

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