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Nonlinear dynamic analysis of slender reinforced concrete structures subjected to wind loading

机译:对风装的细长钢筋混凝土结构的非线性动力学分析

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The goal of this paper is to propose a non-linear dynamic model based on experimental data and NBR-6123:1987 [1] to accomplish a non-linear dynamic analysis of slender structures subjected to wind loading. Several tests were conducted do asses the effective stiffness of slender structures as function of the internal loads. Once we have one equation to represent the real stiffness we proceed the dynamic analysis. At first we compute the static response given by the mean wind speed. In this part of the problem we consider the concept of effective stiffness to represent the physical non-linearity of material and a P-Delta method to represent the geometrical non-linearity. Considering the final stiffness obtained in that P-Delta method we compute the dynamic response given by the floating wind speed, according to the discrete dynamic model given by NBR-6123:1987 [1]. A 40 m RC telecommunication tower was analyzed and the results obtained were compared with those given by linear static and dynamic models. We conclude that the non-linear dynamic analysis proposed here leads to values of internal loads 15% larger than the traditional linear dynamic analysis and 50% larger than the static analysis.
机译:本文的目标是提出基于实验数据和NBR-6123的非线性动态模型:1987 [1]来实现经受风荷载细长结构的非线性动态分析。进行了几次测试确实将细长结构的有效刚度作为内部载荷的功能。一旦我们有一个方程来表示真正的僵硬,我们就会进行动态分析。首先,我们计算由平均风速给出的静态响应。在这部分问题中,我们考虑有效刚度的概念来代表材料的物理非线性和代表几何非线性的P-Delta方法。考虑到在P-DELTA方法中获得的最终刚度,根据NBR-6123:1987 [1]给出的离散动态模型,我们计算由浮风速度给出的动态响应。分析了40米的RC电信塔,并将获得的结果与线性静态和动态模型给出的结果进行了比较。我们得出结论,这里提出的非线性动态分析导致内部载荷的值比传统的线性动态分析大15%,比静态分析大50%。

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