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Damage localization using shape change in uniform load surface for civil large-span space structures

机译:在民用大跨度空间结构中使用均匀载荷面的形状变化进行损伤定位

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摘要

Civil large-span space structures have been widely built for public assembly venues. The failure of this type of structure may endanger the lives of many people. Considering that the member configuration of this type of structure may follow a regular pattern and damage in a local region may destroy the regular pattern, a damage detection approach based on the change in structural shape has been proposed by the present authors. In that approach, to obtain the change in structural shape due to damage, the displacements at joints between members are required to be measured. Since it is difficult to measure displacements on this type of structure in practice, in this study, the authors proposed to use the shape change of the uniform load surface for damage localization. Uniform load surface physically represents the deflection profile of the structure under the assumed uniformly distributed loading and can be calculated from the flexibility matrix constructed from the identified natural frequencies and mode shapes. This approach can locate damage to exact structural members. It will avoid costly and tedious work in measuring displacements. This approach has been numerically validated on single-layer space structures with two different member configurations.
机译:在公共集会场所广泛建造了民用大跨度空间结构。这种结构的失败可能危及许多人的生命。考虑到这种类型的结构的构件构型可以遵循规则的图案并且局部区域中的损坏可以破坏规则的图案,因此本发明人已经提出了基于结构形状的改变的损伤检测方法。在这种方法中,为了获得由于损坏引起的结构形状变化,需要测量构件之间的接合处的位移。由于在实践中很难测量这种结构的位移,因此在本研究中,作者建议使用均匀载荷面的形状变化进行损伤定位。均匀的载荷表面在物理上表示假定的均匀分布载荷下结构的挠曲曲线,并且可以根据根据识别出的固有频率和振型构造的挠性矩阵进行计算。这种方法可以确定对精确结构构件的损坏。它将避免在测量位移时进行昂贵且繁琐的工作。该方法已在具有两种不同构件配置的单层空间结构上进行了数值验证。

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