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Characterization of silty soil thin layering and groundwater conditions for liquefaction assessment

机译:液化评估液体薄层分层和地下水条件的特征

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摘要

Tools for characterizing thin layering and groundwater table conditions are evaluated at silty soil sites being assessed for liquefaction. Thin interlayered stratigraphy and groundwater table fluctuation are two potential causes for inconsistencies observed during the Canterbury earthquake sequence, wherein liquefaction did not manifest at several silty soil sites, despite simplified liquefaction assessment procedures indicating severe manifestations would be expected. Site investigations should capture these features to allow for improved assessment of liquefaction potential at silty soil sites. Cone penetration tests (CPTs), mini-CPTs, and sonic borings do not adequately capture thin layering. However, detailed logging of high-quality samples captures the actual in situ layering that may help explain the limitations of simplified liquefaction assessment procedures at these sites, revealing the need to understand underlying limitations in current site investigation techniques. Piezometers, sonic borings, high-quality sampling, crosshole testing, and regional groundwater maps are evaluated to assess their ability to capture complex groundwater conditions. Multiple groundwater measurement methods are typically required to characterize groundwater fluctuations. An approach to using enhanced site characterization tools is recommended for liquefaction assessments at silty soil sites with thin layering and groundwater fluctuations.
机译:用于表征薄层和地下水表条件的工具在评估液化的粉质土壤部位评估。薄的层间地层和地下水位波动是在坎特伯雷地震序列期间观察到的两个潜在原因,其中液化在几个粉状土地上没有表现出,尽管预期严重表现的简化液化评估程序。现场调查应捕获这些功能,以便改善粉质土壤位点的液化潜力的评估。锥形渗透试验(CPTS),迷你CPT和声波硼,不充分捕获薄层。然而,高质量样本的详细记录捕获了实际的原位分层,这可能有助于解释这些网站上简化的液化评估程序的局限性,揭示了了解当前现场调查技术的潜在限制。评估压力计,声波钢管,高质量采样,十字孔测试和区域地图,以评估其捕获复杂地下水条件的能力。通常需要多种地下水测量方法来表征地下水波动。建议使用增强现场表征工具的方法,以薄层土壤部位的液化评估,具有薄层和地下水波动。

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