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A new strength criterion and constitutive model of gas hydrate-bearing sediments under high confining pressures

机译:高围压下含天然气水合物沉积物的强度新准则和本构模型

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Mechanical properties of gas hydrate-bearing sediments are important for the safe production of natural gas from hydrate reservoirs, as well as conventional oil or gas beneath the gas hydrate bearing sediments. In order to determine the failure load and describe the deformation behavior of gas hydrate-bearing sediments in deepwater regions, a series of triaxtal compression tests on synthetic gas hydrate-bearing sediment cores were conducted under high confining pressures and a temperature of -10 °C. The results verify that the deviator stress increases gradually with increasing axial strain and finally reaches a constant value without significant peak value. When confining pressure > 5 MPa, the failure strength decreases with increasing confining pressure because of particle crushing and pressure melting of ice. A new strength criterion to well reflect the failure load of gas hydrate-bearing sediments under high confining pressures is proposed based on the experimental results. The Duncan-Chang model is used to describe the deformation behavior of gas hydrate-bearing sediments under various confining pressures, and it is found that the results predicted by the model agree well with the experimental data.
机译:含天然气水合物的沉积物的机械性能对于从天然气水合物储层以及天然气水合物沉积物中的常规石油或天然气的安全生产至关重要。为了确定破坏载荷并描述深水区含天然气水合物沉积物的变形行为,在高围压和-10°C的温度下对合成含天然气水合物沉积物芯进行了三轴压缩试验。 。结果证明,偏应力随着轴向应变的增加而逐渐增加,最终达到恒定值而没有明显的峰值。当围压> 5 MPa时,由于颗粒破碎和冰的压力融化,破坏强度会随着围压的增加而降低。根据实验结果,提出了一种新的强度准则,可以较好地反映高围压条件下含天然气水合物的沉积物的破坏载荷。用邓肯-张模型描述了含气水合物沉积物在不同围压下的变形行为,发现该模型预测的结果与实验数据吻合良好。

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