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An accurate and efficient implementation of initial geometrical imperfections in the predictor-corrector reduced-order modeling method

机译:预测校正器倒计阶建模方法中的初始几何缺陷的准确有效地实现了初始几何缺陷

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摘要

A predictor-corrector reduced-order modeling method based on Koiter theory is proposed for nonlinear buckling analysis of thin-walled structures with initial geometric imperfections. The imperfections are implemented into the von Korman kinematics and are considered using an a priori and a posteriori manners, respectively, in buckling analysis. Since the nonlinear predictor obtained from the reduced order model with imperfections provides a fairly large step size in path-tracing, the a priori account of imperfections still shows advantages in computational efficiency. The advantages are more significant when considering a posteriori the effects of imperfections in the reduced order model of the structure without imperfections, which means building once and for all, by simply adding some independent imperfection terms in the reduced system. The a posteriori accounts of imperfections with the first/second-order accuracies, are developed, respectively, to deal with the linearonlinear prebuckling behaviors and small/large imperfection amplitudes. The good performance of the proposed method in terms of reliability, accuracy and computational effort is demonstrated with several examples using the linear buckling modes or measured geometric shapes as whole-field geometric imperfections. (C) 2020 Elsevier Ltd. All rights reserved.
机译:基于Koiter理论的预测校正器衰减阶建模方法,初始几何缺陷的薄壁结构的非线性屈曲分析。不完美的缺陷被实施到von Korman运动学中,并且分别考虑了屈曲分析中的先验和后验稿。由于从具有缺陷的减少的订单模型获得的非线性预测器,因此在路径跟踪中提供了相当大的步长,因此先验的缺陷仍显示在计算效率方面的优点。当在缺陷的阶阶模型中考虑缺陷的缺陷的效果而没有缺陷的情况下,这些优点更为显着,这意味着在减少系统中添加一些独立的缺陷术语,这意味着建设一次。分别开发了第一个/二阶精度的缺陷的后验,以处理线性/非线性预定行为和小/大缺陷幅度。在可靠性,准确性和计算工作方面,使用线性屈曲模式或测量的几何形状作为整个场几何缺陷的几何形状来说明所提出的方法的良好性能。 (c)2020 elestvier有限公司保留所有权利。

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