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Direct computation of nonlinear mapping via normal form for reduced-order models of finite element nonlinear structures

机译:通过正常形式直接计算非线性型号的有限元非线性结构的阶数模型

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The direct computation of the third-order normal form for a geometrically nonlinear structure discretised with the finite element (FE) method, is detailed. The procedure allows to define a nonlinear mapping in order to derive accurate reduced-order models (ROM) relying on invariant manifold theory. The proposed reduction strategy is direct and simulation free, in the sense that it allows to pass from physical coordinates (FE nodes) to normal coordinates, describing the dynamics in an invariant-based span of the phase space. The number of master modes for the ROM is not a priori limited since a complete change of coordinate is proposed. The underlying theory ensures the quality of the predictions thanks to the invariance property of the reduced subspace, together with their curvatures in phase space that accounts for the non-resonant nonlinear couplings. The method is applied to a beam discretised with 3D elements and shows its ability in recovering internal resonance at high energy. Then a fan blade model is investigated and the correct prediction given by the ROMs are assessed and discussed. A method is proposed to approximate an aggregate value for the damping, that takes into account the damping coefficients of all the slave modes, and also using the Rayleigh damping model as input. Frequency-response curves for the beam and the blades are then exhibited, showing the accuracy of the proposed method. (C) 2021 Elsevier B.V. All rights reserved.
机译:详细说明了用有限元(Fe)方法离散地区的几何非线性结构的三阶正常形式的直接计算。该过程允许定义非线性映射,以便导出依赖于不变的歧管理论的准确降低的阶数(ROM)。所提出的减少策略是直接和仿真的,从而在它允许将物理坐标(FE节点)传递到正常坐标,描述了基于不变的相位空间的动态。由于提出了建议坐标的完整变化,ROM的主模式的数量不是先验的受限。由于减少子空间的不变性属性,潜在的理论确保了预测的质量,以及它们在占非谐振非线性耦合的相位空间中的曲率。该方法应用于具有3D元件离散的光束,并显示其在高能量下恢复内部共振的能力。然后研究了风扇刀片模型,并评估并讨论了ROM给出的正确预测。提出了一种方法来近似阻尼的聚合值,其考虑了所有从模式的阻尼系数,以及使用瑞利阻尼模型作为输入。然后表现出梁和叶片的频率响应曲线,显示出所提出的方法的精度。 (c)2021 elestvier b.v.保留所有权利。

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