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Computation of Effective Bending Stiffness of RC Telecommunication Towers based on Experimental Data

机译:基于实验数据计算RC电信塔有效弯曲刚度的计算

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We present some results of the application of optimization techniques to experimental data for the determination of the effective bending stiffness of cross-sections of reinforced concrete (RC) structures. The objective is to determine parameters of unstressed sections for the correct computation of the displacements of these structures and possible applications on structural failure theory. The experimental data from tests with 30 and 40 m long RC telecommunication towers, having circular cross-section with 50 cm diameter for the 30 m structure and 60 cm diameter for the 40 m structure, are used. For cross-sections along the axis of the structure, the effective stiffness equation is derived. To accomplish the structural analysis, the structures are discretized and the differential equation of the elastic line integrated to obtain the rotations and displacements. Optimization problems are defined so that the objective functions are the approximation errors, while the design variables are the coefficients of the effective bending stiffness equations of the cross-sections. Two different formulations are used to compute the effective stiffness. The first one gives one equation for each node section and the other formulation provides only one equation for the whole structure. The effective stiffness is presented in graphs as function of a ratio between the characteristic bending moment and the ultimate moment of the cross-section. The sections where the largest stiffness loss are obtained were the sections that indeed collapsed in real similar structures. Directions for future research are presented.
机译:我们在确定钢筋混凝土(RC)结构横截面的有效弯曲刚度的实验数据中展示了应用优化技术的一些结果。目的是确定未经批压部分的参数,用于正确计算这些结构的位移以及可能的结构失败理论的应用。使用具有30和40μm长的RC电信塔的试验的实验数据,具有用于30m结构的圆形横截面,为30米结构和60厘米的直径为40μm结构。对于沿着结构轴的横截面,导出有效刚度方程。为了实现结构分析,可以离散化和集成的弹性线的微分方程以获得旋转和位移。优化问题定义,使得目标函数是近似误差,而设计变量为横截面的有效弯曲刚度的方程的系数。两种不同的配方用于计算有效刚度。第一个给出每个节点部分的一个等式,而另一个配方仅为整个结构提供一个方程。有效刚度在图中呈现,作为特征弯矩与横截面的最终时刻之间的比率的函数。获得最大刚度损失的部分是确实在真实类似的结构中塌陷的部分。提出了未来研究的路线。

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