首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Three-component seismic land streamer study of an esker architecture through S- and surface-wave imaging
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Three-component seismic land streamer study of an esker architecture through S- and surface-wave imaging

机译:通过S-and Surface-Wave成像进行ESKER架构的三组分地震落地媒体研究

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We deployed a newly developed 3C microelectromechanical system-based seismic land streamer over porous glacial sediments to delineate water table and bedrock in Southwestern Finland. The seismic source used was a 500 kg vertical impact drop hammer. We analyzed the SH-wave component and interpreted it together with previously analyzed P-wave component data. In addition to this, we examined the land streamer's potential for multichannel analysis of surface waves and delineated the site's stratigraphy with surface-wave-derived S-wave velocities and V-P/V-S ratios along the entire profile. These S-wave velocities and V-P/V-S ratios complement the interpretation conducted previously on P-wave stacked section. Peculiarly, although the seismic source used is of a vertical-type nature, the data inspection indicated clear bedrock reflection on the horizontal components, particularly the transverse component. This observation led us to scrutinize the horizontal component data through side-by-side inspection of the shot records of all the three components and particle motion analysis to confirm the S-wave nature of the reflection. Using the apparent moveout velocity of the reflection, as well as the known depth to bedrock based on drilling, we used finite-difference synthetic modeling to further verify its nature. Compared with the P-wave seismic section, bedrock is relatively well delineated on the transverse component S-wave section. Some structures connected to the kettle holes and other stratigraphic units imaged on the P-wave results were also notable on the S-wave section, and particularly on the surface-wave derived S-wave velocity model and V-P/V-S ratios. Our results indicate that P-, SV-, and SH-wave energy is generated simultaneously at the source location itself. This study demonstrates the potential of 3C seismic for characterization and delineation of the near-surface seismics.
机译:我们部署了一个新开发的3C微机电系统的地震陆地拖网在多孔冰川沉积物上,以在芬兰西南部的划分水桌和基岩。所用地震源是500公斤的垂直冲击锤。我们分析了SH波部件并将其与先前分析的P波分量数据一起解释。除此之外,我们还研究了陆地流媒体对表面波的多通道分析的潜力,并沿着整个轮廓划定了与表面波衍生的S波速度和V-P / V-S比的地点的地层。这些S波速度和V-P / V-S比率补充了先前在P波堆叠部分上进行的解释。特殊的是,虽然所使用的地震源具有垂直式性质,但数据检查指示在水平部件上的透明基岩反射,特别是横向部件。该观察使我们通过对所有三个组件的射击记录的并排检查来审查水平分量数据和粒子运动分析,以确认反射的S波本质。利用反射的明显偏移速度,以及基于钻井的已知深度,我们使用了有限差异的合成模型来进一步验证其性质。与P波震动截面相比,基岩在横向部件S波部分上横向划分。连接到水壶孔的一些结构和成像在P波结果上成像的其他地层单元也在S波部分上显着,特别是在表面波衍生的S波速度模型和V-P / V-S比上。我们的结果表明,在源位置本身同时生成P-,SV-和SH波能量。本研究表明,用于近表面地震的表征和描绘的3C地震的潜力。

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