胶结(地质)
岩土工程
笼状水合物
地质学
有效应力
材料科学
粒子(生态学)
多孔性
离散元法
水合物
复合材料
水泥
机械
化学
海洋学
有机化学
物理
作者
Zeshao You,Yanghui Li,Meixiao Yang,Peng Wu,Tao Liu,Jiayu Li,Wenkang Hu,Yongchen Song
出处
期刊:Energy
[Elsevier]
日期:2023-12-20
卷期号:289: 130088-130088
被引量:6
标识
DOI:10.1016/j.energy.2023.130088
摘要
Natural gas hydrates are commonly found in onshore permafrost and seabed regions. Hydrates often exhibit different pore habits in different regions, which may affect the mechanical behavior of hydrate-bearing sands (HBSs). In this study, pore-filling, load-bearing and cementing HBSs were prepared using discrete element method (DEM). The numerical biaxial compression tests show that the digital cementing HBS specimen well capture the stress-strain response of the gas-saturated HBS specimen in experiments under σc = 3 MPa, which justify the DEM model in this study. The pore-filling hydrates contribute little to the stress-strain response of sediments, while the load-bearing and cementing hydrates significantly enhance the failure strength and stiffness, and also induce strain-softening behavior and higher volume dilation. Hydrate cementation hinders the lateral fabric development in HBS, and renders orderly particle displacement and abundant strong force chains. The yielding of HBS is dominated by the buckling of strong force chains. Particle sliding, dislocation and rotation are responsible for the formation and development of shear bands, which governs the volume dilation and non-uniform deformation of HBS. Comprehending the geomechanical behavior of HBS under different hydrate habits facilitates the optimization of engineering solutions for hydrate exploitation.
科研通智能强力驱动
Strongly Powered by AbleSci AI