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Nondestructive Method for Length Estimation of Pile Foundations Through Effective Dispersion Analysis of Reflections

机译:通过有效分散分析思考的桩基长度估计的无损方法

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摘要

Motivated by the important problem of unknown foundations, a nondestructive evaluation technique, named effective dispersion analysis of reflections (EDAR), is developed for estimating embedded depth of pile foundations. EDAR testing involves laterally exciting the pile with the hammer and measuring the accelerations at two other points on the pile. The novelty of EDAR comes from the processing these signals; unlike existing methods, EDAR accurately captures the effect of physical dispersion of the waves as they propagate in the pile, and the reflections from the pile tip. The key to data processing is the EDAR plot, which is a plot of phase difference between the two responses as a function of newly introduced effective wavenumber that encapsulates the wave dispersion characteristics. The methodology is easy to use in that a simple formula can convert the oscillatory characteristics of EDAR plot to the unknown embedded depth. This paper contains the derivation of the underlying formulation followed by verification with synthetic models and validation in laboratory settings, resulting in less than 5% error in embedded length.
机译:由未知基础的重要问题的动机,开发了一种非破坏性评价技术,反射(EDAR)的有效分散分析,用于估计嵌入深度的桩基厚度。 EDAR测试涉及用锤子横向激励桩,并在桩上的其他两个点测量加速度。 edar的新颖性来自处理这些信号;与现有方法不同,EDAR准确地捕获波浪在桩中传播时物理分散的效果,以及来自桩尖的反射。数据处理的关键是EDAR图,它是两个响应之间的相位差的曲线图,作为封装波色散特性的新引入有效波数的函数。该方法易于使用,即简单的公式可以将EDAR曲线的振荡特性转换为未知的嵌入深度。本文包含底层配方的推导,然后在实验室设置中使用合成模型和验证进行验证,导致嵌入式长度不到5%。

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