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Time dependent uncertain free vibration analysis of composite CFST structure with spatially dependent creep effects

机译:具有空间相关蠕变效应的复合CFST结构随时间的不确定自由振动分析

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In this study, the time dependent free vibration analysis of composite concrete-filled steel tubular (CFST) arches with various uncertainties is thoroughly investigated within a non-stochastic framework. From the practical inspiration, both uncertain material properties and mercurial creep effect associated with such composite materials are simultaneously incorporated. Unlike traditional non-probabilistic schemes, both spatially independent (i.e., conventional interval models) and dependent (i.e., interval fields) interval system parameters can be comprised within a unified uncertain free vibration analysis framework for CFST arches. For the purpose of achieving a robust framework of the time-dependent uncertain free vibration analysis, a new computational approach, which has been developed within the scheme of the finite element method (FEM), has been proposed for determining the extreme bounds of the natural frequencies of practically motivated CFST arches. Consequently, by successfully solving two eigenvalue problems, the upper and lower bounds of the natural frequencies of such composite structures with various uncertainties can be rigorously secured. The unique advantage of the proposed approach is that it can be effectively integrated within commercial FEM software with preserved sharp bounds on natural frequencies for any interval field discretisation. The competence of the proposed computational analysis framework has been thoroughly demonstrated through investigations on both 2D and3D engineering structures. (C) 2019 Elsevier Inc. All rights reserved.
机译:在这项研究中,在非随机框架内彻底研究了具有各种不确定性的复合钢管混凝土(CFST)拱的时变自由振动分析。从实践中得到启发,同时结合了不确定的材料性能和与这种复合材料相关的汞蠕变效应。与传统的非概率方案不同,空间独立的(即常规间隔模型)和相关的(即间隔域)间隔系统参数都可以包含在CFST拱的统一不确定自由振动分析框架中。为了获得可靠的时变不确定自由振动分析框架,已提出了一种在有限元方法(FEM)方案内开发的新计算方法,用于确定自然极限。实际驱动的CFST拱的频率。因此,通过成功地解决两个特征值问题,可以严格地确保具有各种不确定性的这种复合结构的固有频率的上限和下限。所提出的方法的独特优势在于,它可以有效地集成在商业FEM软件中,并且对于任何间隔场离散化,都可以保留自然频率上的清晰界限。通过对2D和3D工程结构的研究,已完全证明了所提出的计算分析框架的能力。 (C)2019 Elsevier Inc.保留所有权利。

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