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Effect of confining pressure on mechanical behavior of methane hydrate-bearing sediments

机译:围压对甲烷水合物沉积物力学行为的影响

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Synthesized gas hydrate in lab was mixed with kaoline to form core samples, so as to simulate the hydrate-bearing sedimentary layers in the seabed. Under conditions of different confining pressure, triaxial compressive tests were conducted on hydrate-bearing sediments with different volume content of kaoline. The results show that: (1) The failure strength of gas hydrate-bearing sediments increases with the confining pressure at a low-pressure stage. The strength tends to decline gently with further increases of confining pressure. (2) The modulus of elasticityE0keeps unchanged under various confining pressures. But the secant modulusE50presents a great dependency on the confining pressure. Secant modulus increases to the peak and then decreases with the increase of confining pressure; (3) The internal friction angles of gas hydrate-bearing sediments are not sensitive to the volume ratio of kaoline, but its cohesion depends on the volume ratio of kaoline. The sediment strength increases with the increase of kaoline content.
机译:将实验室合成的天然气水合物与高岭土混合形成岩心样品,以模拟海床中含水合物的沉积层。在不同围压条件下,对高岭土体积含量不同的含水合物沉积物进行了三轴压缩试验。结果表明:(1)含气水合物沉积物的破坏强度在低压阶段随围压的增加而增大。随着围压的进一步增加,强度趋于平缓下降。 (2)弹性模量E0在各种围压下均保持不变。但是正割模量E50很大程度上取决于围压。正割模量增加到峰值,然后随着围压的增加而减小; (3)含天然气水合物的沉积物的内摩擦角对高岭土的体积比不敏感,但其内聚力取决于高岭土的体积比。沉积物强度随着高岭土含量的增加而增加。

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