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Direct-push Based Seismic Crosshole Testing for Geotechnical Engineering Applications

机译:基于直推的岩土工程应用的地震交叉孔试验

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In areas with an unknown geology, boreholes are usually placed either at the planned location of buildings and infrastructure or following a semiregular pattern. The number of boreholes is typically limited by installation cost, especially the number of boreholes to be used for geophysical testing, such as those used for downhole, crosshole, or tomographic analyses. An alternative approach to conventional drilling is the use of mobile pushing devices, i.e., direct push procedures. By placing geophysical tools into the pushing rods, geophysical methods become more flexible and adaptive during drilling, and investigation techniques can be implemented more expeditiously. From a geoengineering perspective, the in-situ tests are relatively efficient because they generate near continuous data and are considerably more accurate in comparison to laboratory consolidation tests. In this paper we present a combination of a direct-push system with seismic crosshole measurements as a cost effective alternative to standard investigation techniques. The new methodology was successfully tested at the site for Technical Safety (TTS) in Horstwalde, Germany. A complete crosshole dataset of P-, SV- and SH-waves was acquired between previously installed PVC cased boreholes and the direct-push borehole. Furthermore, the in-situ profiles of paired shear wave velocity profiles (SH and SV) were used to evaluate the stress history of the soils.
机译:在地质未知的地区,钻孔通常位于建筑物和基础设施的计划位置或遵循半象模式。钻孔的数量通常受到安装成本的限制,特别是用于地球物理测试的钻孔的数量,例如用于井下,十字孔或断层摄影分析的钻孔。传统钻井的替代方法是使用移动推动装置,即直接推送程序。通过将地球物理工具放入推杆中,地球物理方法在钻井期间变得更加灵活,自适应,并且可以更快地实施调查技术。从地理工程的角度来看,原位测试是相对效率的,因为它们与实验室固结测试相比,它们会产生近连续数据,并且相当准确。在本文中,我们呈现了一种直推系统的组合,具有地震横梁测量作为标准调查技术的成本效果替代方案。新方法在德国Horstwalde的技术安全(TTS)的现场成功地测试过。在先前安装的PVC壳体钻孔和直推钻孔之间获得了P-,SV-和SH波的完整交叉孔数据集。此外,配对剪切波速度分布(SH和SV)的原位型材用于评估土壤的应力历史。

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