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Finite Element Modelling of Acoustic Waves Propagation in Stone Masonry

机译:石砌体中声波传播的有限元建模

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The paper deals with the finite element modelling of acoustic waves propagation through a stone masonry specimen. In the last decades major efforts have been devoted to improve Sonic and Ultrasonic analysis of structural members and provide suitable correlations between acoustic wave features and the material parameters. This paper concerns the ultrasonic analysis of a masonry specimen made of trachyte blocks and cement mortar, including an inner void as an anomaly supposed to be detected by the analysis. The tests were performed with several equipments accordingly to the Direct Transmission Technique, transmitting an ultrasound signal by a piezoelectric transducer and detecting and analysing the signal received on the opposite side by another transducer. Basically the transmission time of the signal through an ideal path from the emitting and receiving transducers and the resulting wave speed are regarded as the main phenomenological measurements for non-homogeneity and anomalies detection.The presented finite element modelization is a first attempt for providing an inner insight of the propagation of the acoustic wave through a masonry specimen. For this purpose the test has been simulated in the structural field with no regard to the piezoelectric transducer modelization. The specimen with its anomaly has been modelled in details in the elastic field and subjected to a mechanical concentrated action, while displacements have been measured in the corresponding nodes on the opposite side. The analysis have been performed in the transient domain and the resulting displacement measurements have been regarded as the signal received by the transducers, susceptible to the same signal post-processing.
机译:本文涉及通过石砌体标本进行声波传播的有限元建模。在过去的几十年中,已经致力于提高结构构件的声波和超声波分析,并提供声波特征与材料参数之间的合适相关性。本文涉及由棘轮块和水泥砂浆制成的砌体样本的超声波分析,包括通过分析检测的异常空隙。通过相应的若干设备进行测试,以直接传输技术,通过压电换能器发送超声信号并通过另一换能器检测和分析在相对侧接收的信号。基本上,信号通过来自发射和接收换能器的理想路径的发射时间和所得到的波速被认为是非均匀性和异常检测的主要现象学测量。所呈现的有限元建模化是提供内部的第一次尝试通过砌体标本展示声波的传播。为此目的,在结构场中模拟了测试,对于压电换能器建模而言。具有异常的样品已经在弹性场中的细节中建模并进行了机械浓缩作用,而在相对侧的相应节点中测量了位移。在瞬态域中进行了分析,并且已经被认为是由换能器接收的信号被认为的位移测量值,易受相同的信号后处理的信号。

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