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A constitutive mechanical model for gas hydrate bearing sediments incorporating inelastic mechanisms

机译:考虑非弹性机理的含天然气水合物沉积物本构模型

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Gas hydrate bearing sediments (HBS) are natural soils formed in permafrost and sub-marine settings where the temperature and pressure conditions are such that gas hydrates are stable. If these conditions shift from the hydrate stability zone, hydrates dissociate and move from the solid to the gas phase. Hydrate dissociation is accompanied by significant changes in sediment structure and strongly affects its mechanical behavior (e.g., sediment stiffenss, strength and dilatancy). The mechanical behavior of HBS is very complex and its modeling poses great challenges. This paper presents a new geomechanical model for hydrate bearing sediments. The model incorporates the concept of partition stress, plus a number of inelastic mechanisms proposed to capture the complex behavior of this type of soil. This constitutive model is especially well suited to simulate the behavior of HBS upon dissociation. The model was applied and validated against experimental data from triaxial and oedometric tests conducted on manufactured and natural specimens involving different hydrate saturation, hydrate morphology, and confinement conditions. Particular attention was paid to model the HBS behavior during hydrate dissociation under loading. The model performance was highly satisfactory in all the cases studied. It managed to properly capture the main features of HBS mechanical behavior and it also assisted to interpret the behavior of this type of sediment under different loading and hydrate conditions. (C) 2016 Elsevier Ltd. All rights reserved.
机译:含天然气水合物的沉积物(HBS)是在多年冻土和海底环境中形成的天然土壤,其温度和压力条件使天然气水合物稳定。如果这些条件从水合物稳定区转移,则水合物解离并从固相移至气相。水合物的解离伴随着沉积物结构的显着变化,并强烈影响其机械行为(例如,沉积物变硬,强度和膨胀)。 HBS的机械性能非常复杂,其建模提出了巨大的挑战。本文提出了一种新的含水合物沉积物的地球力学模型。该模型结合了分区应力的概念,并提出了许多非弹性机制来捕获此类土壤的复杂行为。该本构模型特别适合模拟解离时HBS的行为。该模型已应用并针对涉及不同水合物饱和度,水合物形态和限制条件的人造样品和天然样品进行的三轴和测深法试验数据进行了验证。尤其要注意在载荷下水合物分解过程中的HBS行为建模。在所有研究的案例中,模型性能都非常令人满意。它设法正确捕捉了HBS力学行为的主要特征,并且还有助于解释这种类型的沉积物在不同载荷和水合物条件下的行为。 (C)2016 Elsevier Ltd.保留所有权利。

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