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Experimental dispersion curves of non-penetrable soils from direct dynamic measurements using the seismic dilatometer (SDMT)

机译:使用地震膨胀仪(SDMT)直接动态测量的非可渗滤性的实验分散曲线

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This paper presents the results of an experimental campaign in Macerata (Italy). In the first step, the research addresses the site characterization by presenting the in situ and laboratory examinations results. In a second step, the study focuses on the more in-depth interpretation of the raw signals acquired by the SDMT in the 100 m deep borehole. The cross-correlation between SDMT signals represents the standard method to estimate the velocity of the shear waves. The authors attempted to assess any dependency of the shear wave velocity on the wavenumber by applying a moving bandpass filtering to the signals acquired in the 100 m deep borehole. In seismic engineering practice, the standard mechanical models of soils are representative of non-dispersive media. This assumption originates from the scarcity of experimental investigations on the dispersion laws of soils and the confidence in dispersion?s possibly negligible effect. However, a purely non-dispersive medium does not exist, and all media do show some dispersion features: the phase velocity of shear waves may depend on the wavenumber.
机译:本文介绍了Macerata(意大利)实验活动的结果。在第一步中,研究通过呈现原位和实验室检查结果来解决现场表征。在第二步中,该研究侧重于在100M深钻孔中获得的SDMT获取的原始信号的更深入解释。 SDMT信号之间的互相关表示估计剪切波的速度的标准方法。作者试图通过将移动的带通滤波应用于在100M深钻孔中获取的信号来评估剪力波速度的任何依赖性。在地震工程实践中,土壤的标准机械模型是非分散媒体的代表性。这种假设源于对土壤分散法的实验调查的稀缺以及分散效应可能可忽略不计的分散性的信心。然而,不存在纯粹非分散介质,并且所有介质确实都显示了一些分散特征:剪切波的相速度可能取决于波数。

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