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Experimental implementation of multichannel surface wave analysis of a concrete pipe along lengthwise direction

机译:沿纵向方向混凝土管多通道表面波分析的实验性实现

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摘要

This is a follow up to our previous paper (Jaganathan, 2019) where the multichannel surface wave (MASW) analysis of a concrete pipe segment was proposed. In that paper, this method was experimentally demonstrated using elastic waves that propagate along the circumferential direction of a reinforced concrete pipe.This paper presents the experimental implementation using waves that propagate along the axial direction of the pipe and its elastic properties along a particular lengthwise cross-section are determined. A numerical validation is conducted by feeding the extracted material properties into a finite element based elastodynamic model. The P-wave velocity estimated by the multichannel approach is used in conjunction with the impact echo analysis to verify wall thickness. In the second half of the paper, multichannel analysis of buried pipes are discussed. Specifically, the effect of soil cover on the dispersion images obtained from the pipe wall is evaluated. Synthetic records are used for this purpose. Dispersion images of a buried pipe for several soil types are generated and compared. (C) 2020 Elsevier B.V. All rights reserved.
机译:这是我们之前的论文(Jaganathan,2019)的跟进,其中提出了混凝土管道段的多通道表面波(MasW)分析。在该纸张中,使用沿着钢筋混凝土管的圆周方向传播的弹性波进行了实验证明了该方法。本文使用沿管道的轴向传播的波及其沿着特定纵向交叉的波动的波浪呈现实验实现决定是确定的。通过将提取的材料特性馈送到基于有限元的弹性动力学模型来进行数值验证。多通道方法估计的P波速度与影响回波分析结合使用以验证壁厚。在本文的下半部分,讨论了埋地管的多通道分析。具体地,评估土壤覆盖对从管壁获得的分散图像的影响。合成记录用于此目的。生成并比较了几种土壤类型的掩埋管道的色散图像。 (c)2020 Elsevier B.V.保留所有权利。

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