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首页> 外文期刊>Journal of Nondestructive Evaluation >Some Observations on the Performance of the Signal Matching Technique in Assessment of Pile Integrity
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Some Observations on the Performance of the Signal Matching Technique in Assessment of Pile Integrity

机译:信号匹配技术在桩完整性评估中的性能观察

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The pulse-echo method is commonly used to assess pile integrity in a nondestructive way. One of the strategies for detecting relative variation in pile impedance is to analyze the wave reflections from the anomalies based on the 1-D stress wave theory. In current practice, however, several difficulties remain to be resolved in interpreting the wave patterns. Firstly, due to possible three-dimensional (3-D) behavior near the source and dispersion behavior far from the source, 1-D stress wave theory is not always applicable in analyzing the reflections from the anomalies. Secondly, reflections can be produced continuously along the shaft due to the pile-soil interaction, so that the reflection patterns are highly correlated to those from the pile body in complex layered soil profiles, and thus it is generally difficult to distinguish whether the reflections are produced by pile anomalies or by the changes in the soil profiles. In this paper, actual wave characteristics are analyzed based on numerical simulations and guided wave theory, the conditions for 1-D approximation are suggested, and the a method for uncoupling the soil resistance and the pile impedance effects is presented. The evaluation of pile integrity can be improved with help of the 1-D based signal matching technique. The technique is applied to experiments conducted on model piles, test piles for accreditation of pile inspectors, and routine in-situ piles. The results show that 1-D stress wave theory is approximately applicable in analyzing the reflections from deep anomalies under certain limited conditions, and the soil resistance and the pile impedance effects can be effectively uncoupled by relating the pile-soil interaction to the pile radius and the properties of the surrounding soils.
机译:脉冲回波方法通常用于以无损方式评估桩的完整性。检测桩阻抗的相对变化的策略之一是基于一维应力波理论分析异常波的反射。但是,在当前的实践中,在解释波动图时仍要解决几个困难。首先,由于源附近可能存在三维(3-D)行为而远离源可能存在色散行为,因此一维应力波理论并不总是适用于分析异常的反射。其次,由于桩土相互作用,可以沿竖井连续产生反射,因此在复杂的分层土壤剖面中,反射模式与桩体的反射模式高度相关,因此通常很难区分反射是否为由桩异常或土壤剖面变化产生。本文基于数值模拟和导波理论对实际波浪特征进行了分析,提出了一维近似的条件,提出了一种将土抗力与桩阻抗效应解耦的方法。借助基于1-D的信号匹配技术,可以改善桩的完整性评估。该技术适用于在模型桩,桩桩检查员认可的测试桩以及常规原位桩上进行的实验。结果表明,一维应力波理论近似适用于分析有限条件下深部异常的反射,并且通过将桩-土相互作用与桩半径和半径相关联,可以有效地解除土壤阻力和桩阻抗效应的耦合。周围土壤的特性。

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