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首页> 外文期刊>Journal of Applied Geophysics >Practical considerations for array-based surface-wave testing methods with respect to near-field effects and shear-wave velocity profiles
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Practical considerations for array-based surface-wave testing methods with respect to near-field effects and shear-wave velocity profiles

机译:基于阵列的表面波测试方法关于近场效果和剪切波速度分布的实践考虑因素

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摘要

An important constraint with geophysical testing methods based on the propagation of surface waves (active surface wave testing methods) comes from the filtering criteria that are used to avoid near and far-field effects. Such criteria suggest the use of a large receiver spread length to calculate accurate dispersion curves. However, for geotechnical investigations, the use of such a wide array is at best not desirable due mainly to site constraints and to the nature of the soil profile whose dynamic properties tend to vary laterally. The effectiveness of using smaller arrays of receivers covering limited distances to calculate accurate Rayleigh-waves dispersion curves and shear-wave velocity profiles is investigated. The methods used to compute the phase velocities are based on both group and phase velocity estimates. It is shown that the proposed method reduces the effects of body waves and the possibility of mode misidentification in the near and far-fields even when a limited number of traces covering relatively small distances are used. Also, the properties of the signal processing technique used to calculate the dispersion curves are shown to have a significant impact on the near and far-field effects. Numerical and experimental data are used to show the potential benefits of using shorter arrays of receivers to characterize the properties of different soil profiles with laterally varying properties. (C) 2019 Elsevier B.V. All rights reserved.
机译:基于表面波传播(有源表面波测试方法)的地球物理测试方法的重要约束来自用于避免近附近和远场效果的过滤标准。这些标准表明使用大接收器扩展长度来计算精确的色散曲线。然而,对于岩土性研究,这种宽阵列的使用是最好的,主要是由于现场约束以及其动态性质倾向于横向变化的土壤轮廓的性质。研究了覆盖有限距离的较小接收器阵列以计算精确的瑞利波色散曲线和剪切波速度分布的有效性。用于计算相速度的方法基于两个组和相位速度估计。结果表明,即使使用覆盖相对小距离的有限数量的迹线,所提出的方法也降低了近距和远场中的模式误识别的可能性。而且,用于计算色散曲线的信号处理技术的特性被示出对近乎和远场效果产生显着影响。数值和实验数据用于显示使用更短的接收器阵列的潜在益处,以表征不同土壤曲线的特性,具有横向变化的性能。 (c)2019年Elsevier B.V.保留所有权利。

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