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首页> 外文期刊>International journal of geomechanics >Methodology for Estimating Creep Deformation from Consolidation Deformation in 1D Compression
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Methodology for Estimating Creep Deformation from Consolidation Deformation in 1D Compression

机译:从一维压缩中的固结变形估算蠕变变形的方法

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In geotechnical engineering, characterization of time-dependent behavior of clayey soils under one-dimensional (1D) constant stress has been controversial. In some special cases, the creep deformation is insignificant during primary consolidation, and is assumed to start at the end of primary consolidation. In the general case, the total deformation results from a coupled process involving both hydromechanical (mechanical loading) and viscous (creep) effects. Creep deformation commences at the start of the loading. This paper proposes a methodology to decouple the creep-deformation component from the total deformation measured in oedometer tests. This methodology is based on the concept of isotache [i.e., there exists a unique relationship among void ratio, effective stress, and time factor (Hypothesis B)]. The methodology was used to analyze the 1D compression data of reconstituted Regina clay samples. It was demonstrated that this methodology is capable of determining the intrinsic properties of a 1D normally consolidated curve (independent of sample thickness and duration of end of primary consolidation) and creep behavior.
机译:在岩土工程中,表征一维(1D)恒定应力下黏土的时间依赖性行为一直存在争议。在某些特殊情况下,蠕变变形在初次固结期间微不足道,并假定在初次固结结束时开始。在一般情况下,总变形是由涉及水力(机械载荷)和粘性(蠕变)效应的耦合过程导致的。蠕变变形在加载开始时开始。本文提出了一种将蠕变变形分量与在里程表测试中测得的总变形解耦的方法。该方法基于等张线的概念[即,空隙率,有效应力和时间因数之间存在独特的关系(假设B)]。该方法用于分析再生的里贾纳粘土样品的一维压缩数据。结果表明,该方法能够确定一维正固结曲线的固有属性(与样品厚度和初固结终点的持续时间无关)和蠕变行为。

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