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首页> 外文期刊>International journal of architectural heritage >Discrete and Continuous Finite Element Models and Their Calibration via Vibration and Material Tests for the Seismic Assessment of Masonry Structures
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Discrete and Continuous Finite Element Models and Their Calibration via Vibration and Material Tests for the Seismic Assessment of Masonry Structures

机译:离散和连续有限元模型及其通过振动和材料试验进行标定,以用于砌体结构的地震评估

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摘要

By virtue of the advanced numerical techniques and in-situ measurements, it is now possible to develop suitable methodologies to be used in the decision making on the rehabilitation of the historical and monumental structures. In this sense, this article presents suitable approaches to support decision-making process. Discrete- and continuum-based finite element modeling strategies that are to be used in the seismic assessment of masonry structures are investigated. The calibration of finite element models by the use of available experimental data is also introduced. In the calibration of discrete models, a finite element model updating (FEMU) procedure that considers the stiffness of contact between adjacent stone units was used. The time history seismic analysis of the updated models were finally carried out using both implicit and explicit time integration schemes in order to introduce the differences in the prospective modelling approaches. First, adopted strategy was verified on a simulated column. Thereafter, a contemporary masonry monument and a historical tower were used to demonstrate the methodologies using experimental data. Some modeling tips for general purpose FE softwares are also given.
机译:借助于先进的数字技术和现场测量,现在有可能开发出合适的方法,用于决策对历史和纪念性建筑的修复。从这个意义上讲,本文提出了支持决策过程的合适方法。研究了将用于砌体结构地震评估的基于离散和连续的有限元建模策略。还介绍了利用可用的实验数据对有限元模型进行的校准。在离散模型的校准中,使用了考虑相邻石材单元之间接触刚度的有限元模型更新(FEMU)程序。最后,使用隐式和显式时间积分方案对更新后的模型进行时程地震分析,以介绍前瞻性建模方法中的差异。首先,在模拟列上验证了采用的策略。此后,当代石工纪念碑和历史塔楼被用来利用实验数据来论证方法。还给出了通用FE软件的一些建模技巧。

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