首页> 外文期刊>Canadian Geotechnical Journal >Isotropic volumetric behaviour of compacted unsaturated soils within specific volume, specific water volume, mean net stress (v, v(w), p) space
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Isotropic volumetric behaviour of compacted unsaturated soils within specific volume, specific water volume, mean net stress (v, v(w), p) space

机译:在特定体积,特定水体积,平均净应力(V,V(W),P)空间中的各向同性的不饱和土的各向同性体积行为

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A detailed description of the volumetric behaviour of compacted unsaturated soils is essential for modelling compacted soil behaviour. It is more complex than when the soil is saturated, as unsaturated soils exhibit a range of responses, such as yielding under loading, swelling and collapse under wetting, and shrinkage and cracking during drying. In unsaturated modelling, (v, s, p) or (v, s, p') is commonly used as the state space to describe volumetric behaviour, where v (= 1 + void ratio, e) is the specific volume; s is the soil suction; and p and p' are the mean net and mean effective or skeleton stress, respectively. An alternative approach is to use (v, v(w), p) space to describe volumetric behaviour, where vw is specific water volume. In either case, coupled water retention behaviour is needed to describe the overall macroscopic process more completely by including the fourth state variable (v(w) or degree of saturation, S-r, for the former and s for the latter). Following from work undertaken under one-dimensional conditions, the current paper presents the volumetric behaviour of compacted kaolin in (v, v(w), p) space. A series of state path tests comprising various loading, unloading, and (or) wetting paths with nondecreasing degrees of saturation was carried out. The results show that a state boundary surface that is also the virgin compaction surface depicting the loosest state of soil takes control of the volumetric behaviour in (v, v(w), p) space, which can be used as a more practical approach to modelling compacted soil behaviour, especially for analysing major wetting events.
机译:对压实的不饱和土体积行为的详细描述对于建模压实的土壤行为至关重要。它比土壤饱和时更复杂,因为不饱和土壤表现出一系列反应,例如在润湿下屈服,溶胀和塌陷下的屈服,溶胀和塌陷,干燥期间收缩和裂缝。在不饱和建模中,(V,S,P)或(V,S,P')通常用作描述体积行为的状态空间,其中V(= 1 +空隙率,e)是特定的体积; S是土壤吸力; P和P'分别是平均净且平均有效或骨架应力。替代方法是使用(V,V(W),P)空间来描述体积行为,其中VW是特定的水量。在任何一种情况下,需要通过包括第四状态变量(V(W)或饱和度,S-R,用于后者的饱和度,S-R)更完全地描述整体宏观过程。在一维条件下进行的工作之后,目前的论文呈现了压实高岭土的体积行为(V,V(W),P)空间。进行一系列状态路径测试,其包括具有非分泌度饱和度的各种装载,卸载和(或)润湿路径。结果表明,该状态边界表面也是描绘土壤的原始压实表面的状态界面,可控制(V,V(W),P)空间中的体积行为,其可以用作更实用的方法建模压实土壤行为,尤其是分析主要润湿事件。

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