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Evaluation of Shear Wave Velocity from Bender Elements Using Cross-Correlation

机译:使用互相关评估弯管机元件的剪切波速度

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The use of bender elements to determine shear wave velocity, and hence shear modulus, is becoming increasingly popular, with commercial systems now available. The most common method of interpretation is to make use of first arrival; however, automation of this procedure has been impossible for the wide range of velocities, sample sizes, stress levels, etc. encountered in soil and weak rock testing. A method for automating the velocity measurement was proposed by Mohsin and Airey in 2003 and relied on the use of cross-correlation. Since that time, many papers have been published on the method of interpretation, and these have often dismissed cross-correlation out of hand or have suggested that it does not work. These criticisms are based on either the fallacy that the input and output waves must look similar in order for the method to work or the selection of the wrong peak in the cross-correlation. We have been using the technique in the laboratory routinely for several years and have found that it can provide results that are at least as good as those obtained via other methods for soils varying from soft clay to silty gravel and well-cemented sand and at stress levels from l0kPa to 2000 kPa. The greatest advantage of the technique is that it removes much of the subjectivity from the analysis, and in our opinion it is the only viable currently proposed method that is suitable for automation, and thus for standardization. This paper provides details of the procedure, pulse type and frequency, and calibration and discusses issues that affect the development of a standard. Results for a range of soil types, stress levels, and shear wave velocities are presented to demonstrate the reliability of the technique.
机译:使用弯曲元件来确定剪切波速度,从而确定剪切模量,正变得越来越流行,目前已有商用系统可用。最常见的解释方法是利用先到达。但是,对于土壤和弱岩石测试中遇到的各种速度,样品大小,应力水平等,该程序的自动化都是不可能的。 Mohsin和Airey在2003年提出了一种自动进行速度测量的方法,该方法依赖于互相关的使用。从那时起,已经发表了许多关于解释方法的论文,这些论文经常忽略了互相关或暗示它不起作用。这些批评基于以下谬论:输入和输出波必须看起来相似才能使方法起作用,或者是在互相关中选择了错误的峰值。我们在实验室中常规使用该技术已有数年,并且发现该技术所提供的结果至少与通过其他方法获得的结果一样好,适用于从软粘土到粉质砾石和水泥好砂的土壤,并且在压力下级别从10 kPa到2000 kPa。该技术的最大优点是,它消除了分析中的大部分主观性,并且在我们看来,这是当前提出的唯一适用于自动化并因此适用于标准化的方法。本文提供了有关步骤,脉冲类型和频率以及校准的详细信息,并讨论了影响标准制定的问题。给出了一系列土壤类型,应力水平和剪切波速度的结果,以证明该技术的可靠性。

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