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Evaluation of the multi-channel surface wave analysis approach for the monitoring of multiple soil-stiffening columns

机译:监测多根加筋柱的多通道表面波分析方法的评估

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Surface wave spectral analysis is a well-known technique in the characterization of layered media, where individual layers are assumed to be laterally homogeneous. This technique was later extended into the multi-channel surface wave analysis approach by using an array of sensors to offer higher signal-to-noise ratio and faster data collection as well as in aiding the identification of surface wave propagation from the source. The objective of this article is to assess the performance of the MASW technique for the monitoring of multiple soil-stiffening columns. The key difference in this application is the strong lateral heterogeneity due to the columns, while being relatively homogeneous in depth. The application of this technique may alleviate the constraints associated with traditional field techniques such as plate loading tests, dynamic probing and field vane shear tests. A laboratory-scale experiment was carried out using materials with controlled properties in order to validate the proposed technique. Two concrete mortar blocks were built, one as a control and another with mild-steel columns installed. A piezo-ceramic transducer was acoustically coupled to the block using a padded weight in order to introduce a stepped-frequency excitation from the surface. Four accelerometers were used to capture the excitation signal. Data were collected from multiple excitations and averaging was then applied to maximize the signal-to-noise ratio. By reconfiguration of the exciter and receivers' arrangement, the area containing the columns was sequentially surveyed. The experimental measurements were processed to obtain the phase velocity as a function of wavelength. Approximated inversion was then applied in order to obtain the phase velocity versus depth and this was repeated for all survey points in order to build a 2D plot of phase-velocity across the line of survey and with respect to depth. The results provided experimental evidence on the performance of this technique in the assessment of stiffening columns, evaluated against the requirements of spatial resolution of columns, the consistency of phase-velocities within the columns and the comparison of the measured stiffness profile against known empirical values.
机译:表面波谱分析是分层介质表征中的一种众所周知的技术,其中各个层被认为在横向上是均匀的。该技术后来通过使用传感器阵列扩展到多通道表面波分析方法,以提供更高的信噪比和更快的数据收集,以及帮助识别从源头传播的表面波。本文的目的是评估MASW技术在监测多个加筋柱时的性能。在此应用中的主要区别是由于柱造成的横向强异质性,同时深度相对均匀。该技术的应用可以减轻与传统现场技术相关的约束,例如板载荷测试,动态探测和现场叶片剪切测试。为了验证所提出的技术,使用了具有受控特性的材料进行了实验室规模的实验。建造了两个混凝土砂浆块,一个作为对照,另一个安装了低碳钢柱。压电陶瓷换能器使用填充重物声学耦合到模块,以便从表面引入步进频率激励。四个加速度计用于捕获激励信号。从多个激励中收集数据,然后取平均值以最大化信噪比。通过重新配置激励器和接收器的布置,依次测量了包含立柱的区域。处理实验测量以获得作为波长的函数的相速度。然后应用近似反演以获得相速度与深度的关系,并对所有测量点重复此过程,以建立一条横跨测量线且相对于深度的相速度的二维图。结果为该技术在评估加劲柱方面的性能提供了实验证据,并根据柱的空间分辨率,柱内相速度的一致性以及测得的刚度曲线与已知经验值的比较进行了评估。

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