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首页> 外文期刊>International journal of geomechanics >Strain-Dependent Creep Behavior of Athabasca Oil Sand in Triaxial Compression
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Strain-Dependent Creep Behavior of Athabasca Oil Sand in Triaxial Compression

机译:阿萨巴斯卡油砂三轴压缩中的应变相关蠕变行为

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Oil sand is a dense granular material with interlocking fabric. As a strain-softening material, oil sand exhibits a more complex creep behavior than that of strain-hardening geomaterials. The creep behavior of oil sand could be excessive and detrimental to surface and subsurface facilities in the long term. This paper describes a study on creep behavior of oil sands. A series of triaxial compression creep tests were performed on oil sand to investigate its creep behavior at different stress and strain levels. The creep behavior of oil sand is dependent not only on both time and stress but also on initial inelastic strain, and it is influenced by the growth of shear bands. A strain-dependent creep model was proposed to describe the prepeak creep behavior of the oil sand. With this model, the dependence of creep rate of oil sands on time, stress, and strain is taken into consideration properly. It was argued that the change in the microstructure of oil sand could be uniquely represented by the inelastic strain of oil sand. Therefore, the potential for plastic flow could be used in modeling oil sand creep. Finally, the general creep rate-stress-inelastic strain relations of strain-hardening and strain-softening soils were developed according to the critical state theory of soil and the inelastic strain-dependent creep rate of soils.
机译:油砂是一种具有互锁织物的致密颗粒材料。作为一种应变软化材料,油砂表现出比应变硬化土工材料更复杂的蠕变行为。从长远来看,油砂的蠕变行为可能过分有害于地面和地下设施。本文描述了油砂蠕变行为的研究。在油砂上进行了一系列三轴压缩蠕变试验,以研究其在不同应力和应变水平下的蠕变行为。油砂的蠕变行为不仅取决于时间和应力,还取决于初始非弹性应变,并且受剪切带的增长影响。提出了应变相关的蠕变模型来描述油砂的峰值蠕变行为。利用该模型,可以适当考虑油砂的蠕变速率与时间,应力和应变的关系。有人认为,油砂微观结构的变化可以用油砂的非弹性应变来唯一表示。因此,塑性流动的潜力可用于模拟油砂蠕变。最后,根据土壤的临界状态理论和非弹性应变相关的土壤蠕变速率,建立了应变硬化和应变软化土壤的一般蠕变速率-应力-非弹性应变关系。

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