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Triaxial compressive properties of artificial methane‐hydrate‐bearing sediment

机译:含甲烷水合物的人工沉积物的三轴压缩特性

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Knowledge of the mechanical properties of gas‐hydrate‐bearing sediments is essential for simulating the geomechanical response to gas extraction from a gas‐hydrate reservoir. In this study, drained triaxial compression tests were conducted on artificial methane‐hydrate‐bearing sediment samples under hydrate‐stable temperature‐pressure conditions. Toyoura sand (average particle size: D_(50) = 0.230 mm), number 7 silica sand (D50 = 0.205 mm), and number 8 silica sand (D_(50) = 0.130 mm) were used as the skeleton of each specimen. Axial loading was conducted at an axial strain rate of 0.1% min~(-1) at a constant temperature of 278 K. The cell and pore pressures were kept constant during axial loading. We found that the strength and stiffness of the hydrate‐sand specimens increased with methane hydrate saturation and with the effective confining pressure, and the secant Poisson’s ratio decreased with the effective confining pressure. The stiffness depends on the type of sand forming the skeleton of the specimens, although the strength has little dependence on the type of sand. According to an earlier work, hydrate‐sand specimens are thought to contract in the early stage of axial loading before starting to expand owing to the dilatancy effect, as is the case for many other geological materials. The test results in this study are discussed in relation to the deformation mechanism proposed in an earlier work.
机译:了解含气水合物沉积物的力学特性对于模拟对从气水合物储层抽气的地质力学响应至关重要。在这项研究中,排水三轴压缩试验是在水合物稳定的温度-压力条件下对含甲烷水合物的人造沉积物样品进行的。将Toyoura砂(平均粒径:D_(50)= 0.230mm),7号硅砂(D50 = 0.205mm)和8号硅砂(D_(50)= 0.130mm)用作每个样品的骨架。轴向加载是在278 K的恒定温度下以0.1%min〜(-1)的轴向应变速率进行的。在轴向加载过程中,单元压力和孔隙压力保持恒定。我们发现,水合物砂样品的强度和刚度随甲烷水合物饱和度和有效围压而增加,而正割泊松比随有效围压而降低。刚度取决于形成样品骨架的砂子的类型,尽管强度与砂子的类型几乎没有关系。根据较早的工作,与其他许多地质材料一样,由于膨胀效应,水合物砂样被认为在轴向载荷的早期收缩,然后开始膨胀。讨论了这项研究中的测试结果,并与早期工作中提出的变形机理进行了讨论。

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