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Non-destructive modal parameter identification of historical timber bridges using ambient vibration tests after restoration

机译:恢复后环境振动试验的历史木材桥的非破坏性模态参数识别

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摘要

Historical structures are important cultural relics which illustrate the progress of engineering development. They are a valuable source of information on construction techniques and materials selection over the centuries. However, many factors, including environmental conditions and natural disasters, contribute to damage and destruction of historical structures. Today, the aim of restoration is to carry out necessary works with care and sensitivity while ensuring historical buildings are restored as near as possible to their original structural strength. However, the extent of the contribution of the restoration to the structure and the determination of the restoration success is carried out by various non-destructive experimental studies. This aim of this paper was to obtain structural modal parameters for the historical timber Buzlupinar Bridge using non-destructive ambient vibration tests after restoration. From calculations of natural frequencies and mode shapes, it can be seen that the six natural frequencies obtained are between 2.0 and 20.0 Hz. To minimize the 34.55% differences in experimental and numerical natural frequencies, a FE model of the timber bridge was updated using manual model updating procedures. The maximum differences were reduced to below 1% except for the fourth mode. (C) 2019 Elsevier Ltd. All rights reserved.
机译:历史结构是重要的文物,说明了工程发展的进步。它们是几个世纪以来的施工技术和材料选择的有价值信息。然而,许多因素,包括环境条件和自然灾害,有助于损害历史结构的损害和破坏。如今,恢复的目的是在确保尽可能接近其原始结构强度的情况下进行护理和敏感性的恢复效果。然而,通过各种无损实验研究进行恢复到结构和恢复成功的贡献的程度。本文的这种目的是在恢复后使用非破坏性环境振动试验获得历史木材Buzlupinar桥的结构模态参数。根据自然频率和模式形状的计算,可以看出所获得的六个自然频率在2.0和20.0Hz之间。为了最大限度地减少实验性和数值自然频率的34.55%,使用手动模型更新程序更新木桥的FE模型。除第四模式外,最大差异降至低于1%以下。 (c)2019年elestvier有限公司保留所有权利。

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