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Effects of soil-foundation-structure interaction on the seismic behavior of monumental towers: the case study of the Carmine Bell Tower in Naples

机译:地基-结构相互作用对纪念塔抗震性能的影响:以那不勒斯胭脂红钟楼为例

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摘要

The seismic safety of historical buildings may be affected by the interaction among soil, foundation and structure, usually neglected in the conventional assessment procedures. Focusing on numerous monumental towers of the Italian cultural heritage, the paper first examines the dynamic behavior of squat to very slender tower structures, through the simplified approach of the 'equivalent oscillator' proposed by Veletsos and Meek [1974]. A method is then proposed for preliminary predictions on the variation of natural period and damping ratio due to the interaction, as a function of structure/soil stiffness ratio. Deeper evaluations of the interaction effects have been carried out considering the case study of the Carmine Bell Tower in Naples, a slender brickwork structure 68 m tall and about 10 m wide, featured by a high artistic value and representing a popular historical symbol of the city. Geotechnical and geophysical investigations have been performed to reconstruct the geometry of the shallow foundations and the subsoil profile, constituted by a deformable deposit of man-made ground, marine and pyroclastic sands overlying volcanic tuff. The dynamic behavior of the Bell Tower has been simulated both by the 'equivalent oscillator' method and by linear dynamic analysis carried out on a more complex and detailed model. Both approaches have been adopted considering the seismic actions suggested by the Italian Code and those determined through seismic response analyses. Comparing the results of the analyses on the fixed based structure with those of the structure on a compliant base, the increase in the period and the reduction in the damping ratio were recognized as compatible with those expected on the basis of the simplified preliminary predictions.
机译:历史建筑物的地震安全性可能会受到土壤,地基和结构之间相互作用的影响,通常在常规评估程序中通常会忽略这一点。着重于意大利文化遗产的众多纪念塔,本文首先通过由Veletsos和Meek [1974]提出的“等效振子”的简化方法,研究了蹲坐至非常细长的塔结构的动力行为。然后提出了一种方法,用于根据结构/土的刚度比对由于相互作用而引起的自然周期和阻尼比的变化进行初步预测。考虑到那不勒斯胭脂红钟楼的案例研究,对相互作用的影响进行了更深入的评估,那是一座高68 m,宽约10 m的细长砖砌结构,具有很高的艺术价值,代表着这座城市的受欢迎的历史象征。进行了岩土工程和地球物理研究,以重建浅层基础和底土剖面的几何形状,其由火山凝灰岩上的人造地面,海洋和火山碎屑砂的可变形沉积物构成。钟楼的动态行为已通过“等效振荡器”方法进行了仿真,并通过在更复杂和更详细的模型上进行的线性动力学分析进行了仿真。考虑到《意大利规范》建议的地震作用和通过地震响应分析确定的地震作用,两种方法均已采用。将基于固定结构的分析结果与基于柔顺结构的分析结果进行比较,可以认为周期的增加和阻尼比的降低与基于简化的初步预测所预期的结果是一致的。

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