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首页> 外文期刊>International Journal of Offshore and Polar Engineering >Analysis of Stress-Strain Behavior and Constitutive Relation of Methane Hydrate-Bearing Sediments with Various Porosity
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Analysis of Stress-Strain Behavior and Constitutive Relation of Methane Hydrate-Bearing Sediments with Various Porosity

机译:不同孔隙率的含甲烷水合物沉积物的应力应变行为及其本构关系分析

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摘要

To study the stress-strain behavior of methane hydrate-bearing sediments with various porosity that was tremendously affected by environmental conditions a series of triaxial tests was performed using artificial samples of methane hydrate-bearing sediments under various conditions with confining pressures (P) at 2.5, 3.75 and 5 MPa, temperatures (0) at -5℃, -10℃ and -20℃, and strain rates at 0.1, 0.5 and 1%/min. The variation of deviator stress with axial strain was observed, and the strain type was analyzed systematically under different experimental conditions. In addition, based on the experimental and analysis results of the stress-strain behavior of triaxial tests, this paper proposes the modified nonlinear elastic Duncan-Chang constitutive model, whose coefficients contain the main factors affecting stress-strain behavior.
机译:为了研究受环境条件极大影响的各种孔隙度的含甲烷水合物沉积物的应力-应变行为,在2.5围压(P)的限制条件下,使用含甲烷水合物沉积物的人工样品进行了一系列三轴试验,3.75和5 MPa,温度(0)在-5℃,-10℃和-20℃,应变速率分别为0.1、0.5和1%/ min。观察了偏应力随轴向应变的变化,并在不同实验条件下系统地分析了应变类型。另外,根据三轴试验的应力-应变行为的实验和分析结果,提出了改进的非线性弹性邓肯-张本构模型,其系数包含了影响应力-应变行为的主要因素。

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