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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Modeling the Stress-Dilatancy Relationship of Unsaturated Silica Sand in Triaxial Compression Tests
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Modeling the Stress-Dilatancy Relationship of Unsaturated Silica Sand in Triaxial Compression Tests

机译:在三轴压缩试验中模拟不饱和硅砂的应力-剪胀关系

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It is well known that partial saturation increases the shear strength and dilatancy of unsaturated sand. However, little research has been carried out on the actual stress-dilatancy relationship. This paper shows that the increase in peak shear strength caused by partial saturation is consistent with an increase in dilatancy, and that conventional stress-dilatancy theories are still valid for unsaturated sand. The use of state indexes as a proxy for dilatancy were investigated and extended to unsaturated sands. Additionally, these indexes can be used to establish a critical state line that is based on material properties only. The validity of the stress-dilatancy theories and the use of state indexes offer simplicity in modeling the shear behavior of unsaturated sand. This will be demonstrated in this paper with the Nor-Sand model, with which the wetting collapse can be explained as a consequence of a loss of dilatancy characteristics.
机译:众所周知,部分饱和会增加非饱和砂的抗剪强度和剪胀性。但是,关于实际应力-剪胀关系的研究很少。本文表明,由部分饱和引起的峰值剪切强度的增加与剪胀性的增加是一致的,并且传统的应力-剪胀理论对于非饱和砂仍然有效。研究了状态指数作为膨胀性的代表,并将其扩展到非饱和砂岩。此外,这些索引可用于建立仅基于材料属性的临界状态线。应力膨胀理论的有效性和状态指数的使用为非饱和砂土的剪切特性建模提供了简便性。这将在本文中用Nor-Sand模型进行演示,利用该模型可以解释由于失去了剪胀性而导致的湿塌陷。

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