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Simple equations guide high-frequency surface-wave investigation techniques

机译:简单方程指南高频表面波调查技术

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摘要

We discuss five useful equations related to high-frequency surface-wave techniques and their implications in practice. These equations are theoretical results from published literature regarding source selection, data-acquisition parameters, resolution of a dispersion curve image in the frequency-velocity domain, and the cut-off frequency of high modes. The first equation suggests Rayleigh waves appear in the shortest offset when a source is located on the ground surface, which supports our observations that surface impact sources are the best source for surface-wave techniques. The second and third equations, based on the layered earth model, reveal a relationship between the optimal nearest offset in Rayleigh-wave data acquisition and seismic setting—the observed maximum and minimum phase velocities, and the maximum wavelength. Comparison among data acquired with different offsets at one test site confirms the better data were acquired with the suggested optimal nearest offset. The fourth equation illustrates that resolution of a dispersion curve image at a given frequency is directly proportional to the product of a length of a geophone array and the frequency. We used real-world data to verify the fourth equation. The last equation shows that the cut-off frequency of high modes of Love waves for a two-layer model is determined by shear-wave velocities and the thickness of the top layer. We applied this equation to Rayleigh waves and multi-layer models with the average velocity and obtained encouraging results. This equation not only endows with a criterion to distinguish high modes from numerical artifacts but also provides a straightforward means to resolve the depth to the half space of a layered earth model.
机译:我们讨论了与高频表面波技术相关的五种有用的方程及其在实践中的影响。这些等式是来自发布的文献的理论结果,关于源选择,数据采集参数,分散曲线图像的分散曲线图像中的分散曲线图像以及高模式的截止频率。当源位于地面上时,第一等式表明瑞利波出现在最短的偏移中,这支持我们的观察结果,即表面冲击源是表面波技术的最佳源。基于分层地球模型的第二和第三等式揭示了瑞利波数据采集和地震设定的最佳最近偏移与地震设定的关系 - 观察到的最大和最小相速度,以及最大波长。在一个测试站点的不同偏移中获取的数据之间的数据进行了比较确认使用所提出的最优最近偏移来获取更好的数据。第四等式示出了给定频率的分散曲线图像的分辨率与地理声音阵列的长度和频率的乘积成比例。我们使用真实世界数据来验证第四方程。最后一个等式表明,通过剪切波速度和顶层的厚度来确定双层模型的高模式的截止频率。我们将此方程式应用于瑞利波和多层模型,具有平均速速并获得令人鼓舞的结果。该等式不仅赋予标准来区分从数值伪像区分高模式,而且提供了一种将深度解析到层状地球模型的半空间的直接装置。

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