Evaluation of Flow Liquefaction Susceptibility in Non-Plastic Silty Soils Using the Seismic Cone

Mining Pub Date : 2024-01-05 DOI:10.3390/mining4010003
H. P. Nierwinski, F. Schnaid, E. Odebrecht
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引用次数: 0

Abstract

The state parameter allows the evaluation of the in situ state of soils, which can be particularly useful in tailings impoundments where flow liquefaction is the most common failure model. Positive state parameter values characterize a contractive response during shearing and, for non-plastic soils, can indicate flow liquefaction susceptibility. This paper presents a methodology to classify and estimate the state parameter (Ψ) for non-plastic silty soils based on seismic cone penetration measurements. The method expands on a previous methodology developed for sands that use the ratio of the small strain shear modulus and the cone tip resistance G0/qt for classification and Ψ assessment. For non-plastic silty soils, drainage conditions during cone penetration must be accounted for and are used to allow soil classification and correct the cone tip resistance. An empirical formulation is proposed to correct qt for partial drainage measurements and predict Ψ for non-plastic silty soils. Mining tailings results of in situ and laboratory tests were used to validate the proposed methodology producing promising responses. The Ψ value estimated through the proposed methodology are in the range of those obtained from laboratory tests, indicating an adequate prediction of behavior for non-plastic silty soils.
利用地震锥评估非弹性淤泥中的流动液化敏感性
状态参数可以评估土壤的原位状态,这在尾矿库中特别有用,因为流动液化是最常见的破坏模式。正的状态参数值表示剪切过程中的收缩响应,对于非塑性土壤,则表示易发生流动液化。本文介绍了一种基于地震锥入度测量对非塑性淤泥质土的状态参数 (Ψ)进行分类和估算的方法。该方法扩展了之前针对砂土开发的方法,即使用小应变剪切模量与锥尖阻力 G0/qt 之比进行分类和Ψ评估。对于非塑性淤泥,必须考虑锥入过程中的排水条件,并用于土壤分类和修正锥尖阻力。提出了一种经验公式,用于校正部分排水测量的 qt,并预测非塑性淤泥质土的Ψ。采矿尾矿的原位测试和实验室测试结果被用来验证所提出的方法,结果令人满意。通过建议的方法估算出的Ψ值与实验室测试得出的Ψ值在一定范围内,表明对非塑性淤泥质土的行为进行了充分预测。
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CiteScore
2.80
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