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Utilizing Direct-Push Crosshole Seismic Testing to Verify the Effectiveness of Shallow Ground Improvements: A Case Study Involving Low-Mobility Grout Columns in Christchurch, New Zealand

机译:利用直推式井眼地震测试来验证浅层地面改良的有效性:涉及新西兰克赖斯特彻奇低流动性灌浆柱的案例研究

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A full-scale field testing program was conducted in Christchurch, New Zealand, to assess the effectiveness of soil stiffening and/or densification caused by the installation of shallow, low-mobility grout (LMG) columns. The LMG columns were designed to be 4 m long and were installed at three different test areas for the purpose of liquefaction mitigation in loose silty sands. Direct-push crosshole (DPCH) seismic testing was performed on unimproved ground and on ground that was improved with the LMG columns. The purpose of the DPCH testing was to verify the integrity of the LMG columns and to identify any changes in soil stiffness created by their installation. The crosshole testing involved sampling the unimproved and improved ground conditions with horizontally propagating shear waves at depths ranging from 0.4 to 5.0 m in 0.2-m increments. The seismic verification method clearly delineated zones of change and LMG column variability. The verification results were confirmed by post-characterization trenching.
机译:在新西兰基督城进行了一次全面的现场测试计划,以评估由于安装浅层低流动性灌浆(LMG)柱而引起的土壤变硬和/或致密化的有效性。 LMG柱的设计长度为4 m,并安装在三个不同的测试区域,目的是减轻松散粉质砂土中的液化。直接推孔(DPCH)地震测试是在未经改良的地面和LMG立柱经过改良的地面上进行的。 DPCH测试的目的是验证LMG色谱柱的完整性,并确定其安装造成的土壤刚度变化。交叉孔测试涉及以0.2-m的增量在0.4至5.0 m的深度范围内水平传播的剪切波对未改善和改善的地面条件进行采样。地震验证方法清楚地描述了变化区域和LMG柱的可变性。验证结果通过后特征化沟槽得到证实。

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