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A Fast Automated Impact Hammer Test Method for Modal Parameter Extraction: Implementation on a Composite Bridge Beam

机译:用于模态参数提取的快速自动冲击锤试验方法:复合桥梁梁的实现

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The experimental modal properties of subs-structures of larger civil engineering structures are rarely measured on-site. In fact, usually, their dynamic characteristics are only evaluated numerically. There are a number of reasons for the lack of experimental verifications, but most probably these are due to the time and cost required to obtain the experimental modal parameters accurately within the context of challenging environmental on-site conditions. For smaller civil engineering structures, experimental dynamic testing significantly increases the overheads of the overall cost of the construction. This paper presents a dynamic identification method based only on experimental and statistical procedures, which highlights and solves some of the practical aspects of experimental identification, allowing extraction of the main modal properties speedily with a reduced cost of human resources and instrumentation. The methodology is described using as an example a composite bridge-beam, made of concrete and fibre-reinforced composite material, which constitutes the first composite bridge applied on a motorway in Europe. The use of the reciprocity of the transfer functions combined with some self-checks of the measurements is shown to be an efficient way to speed up the signal processing, without reducing the accuracy of the results. The Impact Hammer test method described here, uses a list of functions developed as a MATLAB toolbox, and is part of the SERIES project.
机译:较大土木工程结构的亚结构的实验模态性能很少在现场测量。实际上,通常,它们的动态特征仅在数值上进行评估。缺乏实验验证有许多原因,但大多数情况可能是由于在挑战环境现场条件的背景下准确地获得实验模态参数所需的时间和成本。对于较小的土木工程结构,实验性动态测试显着提高了整体建设成本的开销。本文仅提供了一种仅基于实验和统计程序的动态识别方法,该方法突出显示并解决了实验鉴定的一些实际方面,允许迅速提取主要的模态性能,以降低人力资源和仪器的成本。使用由混凝土和纤维增强复合材料制成的复合桥梁的示例描述了该方法,该桥梁构成了在欧洲高速公路上应用的第一复合桥。使用传递函数的互动与测量的一些自检相结合,可以是加速信号处理的有效方法,而不会降低结果的准确性。这里描述的冲击锤测试方法使用作为MATLAB工具箱开发的功能列表,并且是系列项目的一部分。

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