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Vibration Analysis and Dynamic Characterization of Structural Glass Elements with Different Restraints Based on Operational Modal Analysis

机译:基于操作模态分析的不同约束结构玻璃元件的振动分析和动态表征

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Given a series of intrinsic features of structural glass systems (i.e., material properties, type of restraints, operational conditions, etc.), special care should be spent at the design stage, to ensure appropriate fail-safe requirements, but also in the service life of these innovative building components and assemblies. In this paper, the dynamic characterization of simple monolithic glass elements is presented, based on non-destructive laboratory experiments and Operational Modal Analysis (OMA) techniques, including Finite Element (FE) numerical simulations, classical analytical models, and video-tracking approaches. It is shown, in particular, how the actual restraint condition (i.e., flexibility of supports, with respect to ideal boundaries) can affect the vibration parameters of a given glass member (frequency and damping capacity). This turns out in possible variations of its overall structural performance, including stress-strain-related effects, hence suggesting the need for even further dedicated studies and methods for the reliable analysis and design of structural glass assemblies and complex systems under dynamic loads.
机译:考虑到结构玻璃系统的一系列固有特征(即材料特性,约束类型,操作条件等),在设计阶段应格外小心,以确保适当的故障安全要求,而且在使用过程中这些创新的建筑部件和组件的使用寿命。本文基于无损实验室实验和操作模态分析(OMA)技术,包括有限元(FE)数值模拟,经典分析模型和视频跟踪方法,对简单的整体玻璃元件进行了动态表征。特别地,示出了实际的约束条件(即,支撑件相对于理想边界的柔性)如何影响给定玻璃构件的振动参数(频率和阻尼能力)。结果是其整体结构性能可能发生变化,包括与应力-应变相关的影响,因此建议需要进一步的专门研究和方法来对动态载荷下的结构玻璃组件和复杂系统进行可靠的分析和设计。

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