Study of the Strain-Stress Behavior of the loess Soil and Its Numerical Modeling by ABAQUS

Ali Al-abdullah, Najla Al-hassan, Mohammad Eid
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引用次数: 1

Abstract

This research aims to conduct a laboratory study to clarify the behavior of creep in Loess soils with the change of moisture content and applied stress. Soil was brought from Joseh area (southwest of Homs city), and its main properties were determined, after that a series of tests (time dependent deformation) were carried out for the Loess soils within the unconfined compression test. The results showed that the change of moisture content and applied stress on sample have a significant effect on the properties of Creeping of Loess soils, and the deformations that occurred are instantaneous deformations at the moment of load application, and creep deformations that begin with the passage of time. Creep deformations can be divided into three stages: primary creep, stable creep, and accelerated creep. The deformations were evaluated using the Singh-Mitchell theory, and the results showed that the Singh-Mitchell theory fits well the description of deformations over time for Loess soils, where the relative error between the largest and smallest value did not exceed 15%.ABAQUS program was used to numerically describe the creep behavior of Loess soils using the Singh-Mitchell theory .The results showed that the Singh-Mitchell theory within the ABAQUS program gave more accurate values than the computational Singh-Mitchell theory, and the reason is that because of the program contains multiple parameters that describe well the properties of elasticity, plasticity and viscosity for any natural body.
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黄土土的应变-应力特性及其ABAQUS数值模拟研究
本研究旨在通过室内实验研究,阐明黄土在含水量和外加应力变化下的蠕变行为。从Homs市西南部的Joseh地区取土,测定其主要特性,并在无侧限压缩试验中对黄土土进行了一系列试验(随时间变形)。结果表明:试样含水率和外加应力的变化对黄土土体蠕变特性有显著影响,变形主要表现为加载瞬间的瞬时变形和随着时间的推移而开始的蠕变变形。蠕变变形可分为三个阶段:初始蠕变、稳定蠕变和加速蠕变。结果表明,Singh-Mitchell理论可以很好地描述黄土土体的变形随时间的变化,最大值与最小值之间的相对误差不超过15%。利用ABAQUS程序对黄土的蠕变特性进行了数值模拟,结果表明,ABAQUS程序中的Singh-Mitchell理论比计算的Singh-Mitchell理论给出的数值更准确,这是因为ABAQUS程序中包含了多个参数,可以很好地描述任何自然物体的弹性、塑性和黏性。
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