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Strain-based Shape Prediction for Flexible Beam-like Structures

机译:柔性梁状结构的基于应变的形状预测

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This study presents a shape prediction technique for flexible beam-like structures based on measured strains at multiple sensing stations. A deformed beam can be described in terms of the reference line and the reference cross-sectional planes at each point along the reference line. The Kirchhoff's beam theory denotes the relationship between the deformed configuration of a beam and the curvatures of its reference line. The curvatures are related to measured strains on the beam surface using the concept of Green's strain tensor. In this way, the structural deformation is recovered from the measured strains. To test the performance of the proposed algorithm, a numerical beam model is firstly designed and studied. Then, a flexible beam model equipped with fiber optic sensors is tested under different load cases. The results show that the proposed algorithm can be applied successfully to flexible beams. The paper discusses the application of this method in monitoring the configuration of the deformed wings, which are often modelled as beams.
机译:这项研究提出了一种基于多个感测站上测得的应变的柔性梁状结构的形状预测技术。可以根据参考线和沿参考线的每个点的参考横截面描述变形的梁。基尔霍夫梁理论表示梁的变形结构与其参考线的曲率之间的关系。使用格林的应变张量的概念,曲率与束表面上测得的应变有关。以这种方式,从所测量的应变恢复结构变形。为了测试该算法的性能,首先设计并研究了数值波束模型。然后,在不同的负载情况下测试配备了光纤传感器的柔性梁模型。结果表明,该算法可以成功地应用于柔性梁。本文讨论了该方法在监测通常以梁为模型的变形机翼构型中的应用。

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