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首页> 外文期刊>International Journal of Information Technology >Determining G-γ Degradation Curve in Cohesive Soils by Dilatometer and in situ Seismic Tests
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Determining G-γ Degradation Curve in Cohesive Soils by Dilatometer and in situ Seismic Tests

机译:膨胀计和原位地震法测定粘性土中G-γ降解曲线

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摘要

This article discusses the possibility of using dilatometer tests (DMT) together with in situ seismic tests (MASW) in order to get the shape of G-g degradation curve in cohesive soils (clay, silty clay, silt, clayey silt and sandy silt). MASW test provides the small soil stiffness (Go from vs) at very small strains and DMT provides the stiffness of the soil at ‘work strains’ (MDMT). At different test locations, dilatometer shear stiffness of the soil has been determined by the theory of elasticity. Dilatometer shear stiffness has been compared with the theoretical G-g degradation curve in order to determine the typical range of shear deformation for different types of cohesive soil. The analysis also includes factors that influence the shape of the degradation curve (G-g) and dilatometer modulus (MDMT), such as the overconsolidation ratio (OCR), plasticity index (IP) and the vertical effective stress in the soil (svo'). Parametric study in this article defines the range of shear strain gDMT and GDMT/Go relation depending on the classification of a cohesive soil (clay, silty clay, clayey silt, silt and sandy silt), function of density (loose, medium dense and dense) and the stiffness of the soil (soft, medium hard and hard). The article illustrates the potential of using MASW and DMT to obtain G-g degradation curve in cohesive soils.
机译:本文讨论了使用膨胀计测试(DMT)和原位地震测试(MASW)来获得粘性土壤(粘土,粉质粘土,粉砂,粘土质粉砂和砂质粉砂)中G-g降解曲线的形状的可能性。 MASW测试可在很小的应变下提供较小的土壤刚度(从零开始),而DMT可在“工作应变”(MDMT)下提供土壤的刚度。在不同的测试位置,已经通过弹性理论确定了土壤的膨胀计剪切刚度。膨胀计的剪切刚度已与理论G-g降解曲线进行了比较,以确定不同类型的粘性土的典型剪切变形范围。分析还包括影响降解曲线(G-g)和膨胀计模量(MDMT)形状的因素,例如超固结比(OCR),可塑性指数(IP)和土壤中的垂直有效应力(svo')。本文的参数研究根据粘性土壤(粘土,粉质粘土,黏土粉砂,粉砂和砂质粉砂)的分类,密度的函数(松散,中等密实和密实)定义了剪切应变gDMT和GDMT / Go关系的范围)和土壤的硬度(软,中硬和硬)。该文章说明了使用MASW和DMT在粘性土壤中获得G-g降解曲线的潜力。

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