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AN ELASTO-PLASTIC CONSTITUTIVE MODEL FOR GAS HYDRATE-BEARING SOILS

机译:气体水合物土的弹性塑性本构模型

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Methane gas hydrate,usually found beneath permafrost and in marine continental margin sediments worldwide,has attracted interest as a possible energy resource and as a potential agent in climate change and seafloor instability.Here,in order to describe the mechanical behavior of gas hydrate-beating sediments (GHBS),an elastoplastic model is proposed based on the framework of a critical state model.The presence of gas hydrate can increase yield stress,enhancing the cohesion,peak strength and stiffness of the earth materials.Therefore,GHBS is considered as the bonded material in the proposed model.A new bonding strength parameter is introduced into the yield function to evaluate the effect of gas hydrate on the yield behavior of the earth materials.Bonding strength of the GHBS subjected to mechanical loading and/or hydrate dissociation may be drastically reduced,causing strain softening after peak strength.Dilatancy is assumed to be a function of the bonding strength and the stress ratio,instead of the single parameter stress ratio,which can reflect the direction of plastic strain increment more realistically.The proposed model can transform into the modified Cam Clay model when hydrate saturation reduces to zero.Finally,the proposed model has been used to predict the stressstrain behaviors of GHBS in triaxial tests,and it is demonstrated that the proposed model is capable of capturing the main features of the behavior of GHBS.
机译:甲烷天然气水合物,通常发现永久冻土层之下,并在世界各地的海洋大陆边缘沉积,已经吸引了兴趣作为一个可能的能源和气候变化和海底instability.Here一个潜在的代理,以描述含天然气水合物跳动的力学行为沉积物(GHBS),弹塑性模型是基于天然气水合物的临界状态model.The存在可增加屈服应力的框架提出的,增强了接地materials.Therefore的凝聚力,峰强度和刚度,GHBS被视为在所提出的新model.A接合强度参数粘结的材料被引入到产量函数来评估气体水合物上的经受机械负荷和/或水合物分解的GHBS的接地materials.Bonding强度屈服行为的影响可以是急剧降低,峰strength.Dilatancy后引起应变软化被假定为的接合强度的功能和应力比,而不是单个参数应力比,其可以反映塑性应变增量的方向更realistically.The模型能转变成当水合物饱和减少了zero.Finally改性粘土凸轮模型,该模型已被用于预测应力 - 应变GHBS的行为,三轴试验,它证明,该模型能够捕捉GHBS行为的主要特征。

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