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Damage scenario-driven strategies for the seismic monitoring of XX century spatial structures with application to Pier Luigi Nervi's Turin Exhibition Centre

机译:破坏情景驱动的策略对二十世纪空间结构的地震监测及其在皮尔·路易吉·内尔维的都灵展览中心的应用

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摘要

Damage and stiffness degradation in non-structural elements are known to strongly affect the global dynamic response of buildings subject to seismic excitation. This is particularly true for complex structural schemes, such as those characterizing XX century shell and spatial architectures. Moreover, degrading behaviours will strongly influence the design of seismic monitoring systems, which are deemed to be a non-invasive protection strategy for cultural heritage. This paper concerns the optimal sensor placement for vibration-based monitoring of one of the vaulted structures realized by Pier Luigi Nervi in the Turin Exhibition Centre. Based on finite element numerical models and optimization algorithms, the sensor placement in such peculiar structures should also take into account the possible effects of non-structural elements. The objective function used for optimizing sensor placement has been modified in order to account for the progressive damage in infill walls. The final scope of this work was, thus, to propose a damage scenario-driven sensor placement strategy accounting for concurrent damage scenarios, as those affecting spatial architectures. (C) 2017 Elsevier Ltd. All rights reserved.
机译:已知非结构元件的损坏和刚度降低会严重影响受地震激发的建筑物的整体动力响应。对于复杂的结构方案尤其如此,例如那些表征二十世纪的贝壳和空间建筑的方案。此外,有辱人格的行为将极大地影响地震监测系统的设计,地震监测系统被认为是文化遗产的非侵入性保护策略。本文涉及在都灵展览中心的Pier Luigi Nervi实现的拱顶结构之一的基于振动的监测中的最佳传感器位置。基于有限元数值模型和优化算法,传感器在此类特殊结构中的放置还应考虑非结构元素的可能影响。修改了用于优化传感器放置的目标函数,以解决填充墙中的渐进式损坏。因此,这项工作的最终范围是提出一种损坏情景驱动的传感器放置策略,该策略应考虑同时发生的损坏情景,因为这些影响空间架构。 (C)2017 Elsevier Ltd.保留所有权利。

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