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Shift Of Natural Frequencies In earthquake-damaged Structures: an Optimization Approach

机译:地震破坏结构中的自然频率偏移:一种优化方法

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摘要

Purpose - Earthquakes can produce important damage in civil infrastructure, including buildings and bridges, representing an important impact on the economy of many countries. The damage is particularly severe when the dominant frequency of the quake approaches one of the resonant frequencies of the structure. One typical failure occurs through the weakening of some beam-column joints, generally along with the presence of cracking. The standard procedure for repairing this is by reinforcing the damaged zone with steel plates, sleeves or by means of a new section of reinforced concrete covering the old one. These arrangements change the mechanical stiffness and the mass of the structure itself. Accordingly, this work aims to study these mass and stiffness changes of structures through a non-linear optimization of the modal analysis of the structure. Design/methodology/approach - The paper analyzes the potential shifts in natural frequencies of the structure and thus proposes the best conditions under which a damaged bridge could be repaired efficiently. Findings - In the cases analyzed a similar tendency was observed, namely, that the natural frequencies increase (i.e. diminish their period) with the increase of mass of the bottom columns and with the reduction of the uppers ones. The increase of frequencies by increasing the bottom sections seems to be a viable solution. It is observed that by carrying out the presented procedure it is possible to include more variables, in particular to consider not only the first frequency, but also higher orders. Research limitations/implications - A purely theoretical approach has been taken in this study. Originality/value - If confirmed by experimentation this study would have considerable interest to engineers undertaking repair works on earthquake damaged structures.
机译:目的-地震可能对包括建筑物和桥梁在内的民用基础设施造成重大破坏,对许多国家的经济产生重要影响。当地震的主频接近结构的共振频率之一时,破坏特别严重。一种典型的故障是由于一些梁柱节点的削弱而发生的,通常伴随着裂缝的出现。修复此问题的标准程序是通过用钢板,套筒加固受损区域,或通过覆盖旧区域的新钢筋混凝土段来进行修复。这些布置改变了机械刚度和结构本身的质量。因此,这项工作旨在通过对结构模态分析的非线性优化来研究结构的质量和刚度变化。设计/方法/方法-本文分析了结构固有频率的潜在变化,从而提出了可以有效修复受损桥梁的最佳条件。发现-在分析的案例中观察到了类似的趋势,即自然频率随着底部立柱质量的增加和上部立柱的减少而增加(即减小其周期)。通过增加底部来增加频率似乎是一个可行的解决方案。观察到,通过执行所提出的过程,可以包括更多的变量,特别是不仅考虑第一频率,而且考虑更高的阶数。研究的局限性/意义-在这项研究中采用了纯粹的理论方法。原创性/价值-如果通过实验确认,则该研究将对从事地震破坏结构维修工程的工程师产生极大的兴趣。

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