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Curvature Effects on Vibrational Power Flow of Smooth Bent Beams

机译:平滑弯曲梁振动功率流动的曲率效应

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This study discusses an approach to analyze curvature effects on the vibrational powerflow of slender beams. A finite element method (FEM) model was used to calculate transmitted and reflected power via the "propagating wave approach". Previously, the same investigation was addressed with focus on the analytical formulation of curved beams, and an FEM model was programmed using simple two-node straight (Euler-Bernoulli) beam elements. However, the model could simulate in-plane vibrations only, with restrictions to high frequencies (lower than two wavelengths inside the curvatures length). Hence, a new model was proposed, and the curvature parametrization was updated. A novel method to parametrize the curvature in 3D is discussed using quaternions. Results from the updated FEM model and analytical approach were compared for validation. Moreover, the algorithm performed almost exactly like the analytical model, even at high frequencies, which made it suitable to simulate power flow based on the wave approach. The algorithm allows any type of curve configuration to be tested. Curvature effects for in- and out-of-plane vibrations are shown as well. Finally, this work introduces a basis for designing and optimizing slender pipe structures from the perspective of vibration control.
机译:本研究讨论了分析对细长梁振动动力流的曲率效应的方法。有限元方法(FEM)模型用于通过“传播波方法”计算传输和反射功率。以前,在弯曲梁的分析配方上,通过重点解决了同样的研究,使用简单的双节点直线(Euler-Bernoulli)光束元件进行了编程有限元模型。然而,该模型可以仅模拟面内振动,限制对高频(低于曲率长度的两个波长)。因此,提出了一种新的模型,并更新了曲率参数化。使用四季度讨论了参数化曲率的新方法。比较了更新的有限元模型和分析方法的结果以验证。此外,即使在高频下,该算法几乎与分析模型完全相同,这使得适合于基于波的方法模拟电流。该算法允许测试任何类型的曲线配置。显示出与平面外振动的曲率效应。最后,这项工作从振动控制的角度介绍了设计和优化细长管结构的基础。

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