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Surface and downhole shear wave seismic methods for thick soil site investigations

机译:地表和井下剪切波地震法在厚土现场的研究

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Shear wave velocity-depth information is required for predicting the ground motion response to earthquakes in areas where significant soil cover exists over firm bedrock. Rather than estimating this critical parameter, it can be reliably measured using a suite of surface (non-invasive) and downhole (invasive) seismic methods. Shear wave velocities from surface measurements can be obtained using SH refraction techniques. Array lengths as large as 1000 m and depth of penetration to 250 m have been achieved in some areas. High resolution shear wave reflection techniques utilizing the common midpoint method can delineate the overburden-bedrock surface as well as reflecting boundaries within the overburden. Reflection data can also be used to obtain direct estimates of fundamental site periods from shear wave reflections without the requirement of measuring average shear wave velocity and total thickness of unconsolidated overburden above the bedrock surface. Accurate measurements of vertical shear wave velocities can be obtained using a seismic cone penetrometer in soft sediments, or with a well-locked geophone array in a borehole. Examples from thick soil sites in Canada demonstrate the type of shear wave velocity information that can be obtained with these geophysical techniques, and show how these data can be used to provide a first look at predicted ground motion response for thick soil sites.
机译:需要剪切波速度深度信息来预测在坚硬的基岩上存在大量土壤覆盖的地区对地震的地震动响应。无需估计此关键参数,而是可以使用一套地面(非侵入性)和井下(侵入性)地震方法可靠地对其进行测量。可以使用SH折射技术获得来自表面测量的剪切波速度。在某些地区,阵列长度达到1000 m,穿透深度达到250 m。利用普通中点法的高分辨率剪切波反射技术可以描绘出覆盖层-基岩表面,并反射覆盖层内的边界。反射数据还可以用于直接从剪切波反射获得基本站点周期的估计,而无需测量平均剪切波速度和基岩表面以上未固结覆盖层的总厚度。垂直剪切波速度的准确测量可以使用软质沉积物中的地震锥穿透仪,或在井眼中使用锁紧的检波器阵列获得。来自加拿大厚土站点的示例演示了可以通过这些地球物理技术获得的横波速度信息的类型,并展示了如何使用这些数据来初步了解厚土站点的预测地面运动响应。

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