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首页> 外文期刊>Sensors >A Practical Guide to Source and Receiver Locations for Surface Wave Transmission Measurements across a Surface-Breaking Crack in Plate Structures
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A Practical Guide to Source and Receiver Locations for Surface Wave Transmission Measurements across a Surface-Breaking Crack in Plate Structures

机译:用于在板结构中的表面波路传输测量的表面波传输测量的实用指南

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The main objectives of this study are to investigate the interference of multiple bottom reflected waves in the surface wave transmission (SWT) measurements in a plate and to propose a practical guide to source-and-receiver locations to obtain reliable and consistent SWT measurements in a plate. For these purposes, a series of numerical simulations, such as finite element modelling (FEM), are performed to investigate the variation of transmission coefficient of surface waves across a surface-breaking crack in various source-to-receiver configurations in plates. Main variables in this study include the crack depths (0, 10, 20, 30, 40 and 50 mm), plate thicknesses (150, 200, 300, 400 and 800 mm), source-to-crack distances (100, 150, 200, 250 and 300 mm) and receiver-to-crack distances. The validity of numerical simulation results was verified by comparison with results from experiments using Plexiglas specimens using two types of noncontact sensors (laser vibrometer and air-coupled sensor) in the laboratory. Based on simulation and experimental results in this study, practical guidelines for sensor-to-receiver locations are proposed to reduce the effects of the interference of bottom reflected waves on the SWT measurements across a surface-breaking crack in a plate. The findings in this study will help obtain reliable and consistent SWT measurements across a surface-breaking crack in plate-like structures.
机译:本研究的主要目的是研究板中的表面波传输(SWT)测量中的多个底部反射波的干扰,并提出源极和接收器位置的实用指南,以获得A中的可靠且一致的SWT测量盘子。对于这些目的,执行一系列数值模拟,例如有限元建模(FEM),以研究在板中各种源 - 接收器配置中的表面破裂横跨表面波的变速系数的变化。本研究中的主要变量包括裂缝深度(0,10,20,30,40和50mm),板厚度(150,200,300,400和800mm),源极到裂纹距离(100,150, 200,250和300 mm)和接收到裂缝的距离。通过在实验室中使用两种类型的非接触式传感器(激光振动器和空气耦合传感器)来验证数值模拟结果的有效性。基于该研究的仿真和实验结果,提出了传感器到接收器位置的实用指南,以减少底部反射波干扰在板中的表面断裂裂缝上的SWT测量上的影响。该研究中的研究结果将有助于在板状结构中的表面破裂裂缝中获得可靠和一致的SWT测量。

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