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Fundamental vibration frequency prediction of historical masonry bridges

机译:砌体桥梁基本振动频率预测

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摘要

It is very common to find an empirical formulation in an earthquake design code to calculate fundamental vibration period of a structural system. Fundamental vibration period or frequency is a key parameter to provide adequate information pertinent to dynamic characteristics and performance assessment of a structure. This parameter enables to assess seismic demand of a structure. It is possible to find an empirical formulation related to reinforced concrete structures, masonry towers and slender masonry structures. Calculated natural vibration frequencies suggested by empirical formulation in the literatures has not suits in a high accuracy to the case of rest of the historical masonry bridges due to different construction techniques and wide variety of material properties. For the listed reasons, estimation of fundamental frequency gets harder. This paper aims to present an empirical formulation through Mean Square Error study to find ambient vibration frequency of historical masonry bridges by using a non-linear regression model. For this purpose, a series of data collected from literature especially focused on the finite element models of historical masonry bridges modelled in a full scale to get first global natural frequency, unit weight and elasticity modulus of used dominant material based on homogenization approach, length, height and width of the masonry bridge and main span length were considered to predict natural vibration frequency. An empirical formulation is proposed with 81% accuracy. Also, this study draw attention that this accuracy decreases to 35%, if the modulus of elasticity and unit weight are ignored.
机译:在地震设计规范中找到经验公式来计算结构系统的基本振动周期是很常见的。基本振动周期或频率是提供与结构的动态特性和性能评估有关的足够信息的关键参数。该参数使得能够评估结构的地震需求。可以找到与钢筋混凝土结构,砖石塔和细长砖石结构有关的经验公式。由于不同的建造技术和各种各样的材料特性,文献中的经验公式所建议的计算出的自然振动频率并不十分适合于其他历史性砖石桥梁的情况。由于所列原因,基频的估计变得越来越困难。本文旨在通过均方误差研究提出经验公式,以使用非线性回归模型找到历史砌体桥梁的环境振动频率。为此,我们从文献中收集了一系列数据,特别是对以完整比例建模的历史砌筑桥梁的有限元模型进行了研究,以基于均质化方法,长度,考虑砌体桥梁的高度和宽度以及主跨长度来预测自然振动频率。提出了具有81%准确性的经验公式。同样,这项研究引起了人们的注意,如果忽略了弹性模量和单位重量,该精度将降低到35%。

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