Effect of Cylindrical THF Hydrate Veins on the Undrained Behavior of Fine-Grained Soils

被引:6
|
作者
Priest, Jeffrey A. [1 ]
Hayley, Jocelyn L. [1 ]
Wu, Jiechun [2 ]
机构
[1] Univ Calgary, Dept Civil Engn, Calgary, AB, Canada
[2] Thurber Engn Ltd, Calgary, AB, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
shear strength; stiffness; THF hydrate; hydrate veins; triaxial testing; GAS-HYDRATE; METHANE HYDRATE; BEARING SEDIMENTS; MECHANICAL-PROPERTIES; TRIAXIAL TESTS; MARGIN; SAND; DISSOCIATION; STRENGTH; FAILURE;
D O I
10.1029/2021EA001711
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Gas hydrate filled fractures and veins readily occur in fine-grained deep water marine sediments that increase sediment strength and restrict sediment consolidation. Subsequent hydrate destabilization can dramatically reduce sediment strength, which may lead to slope failures. To investigate the undrained behavior a series of consolidated undrained (CU) triaxial tests were carried out on fine-grained soils containing cylindrical tetrahydrofuran (THF) hydrate veins of varying diameter to mimic naturally occurring hydrate-bearing clays. Axial compressions tests on stand-alone hydrate veins showed brittle failure with axial stresses reasonably independent of vein diameter and confining stress and thought related to development of bending stresses and tensile cracking. Reduced axial strain rates led to ductile behavior, potentially suppressing tensile crack development, resulting in slightly higher failure stresses. CU shear tests on hydrate-bearing specimens showed increasing strength and stiffness with increasing vein diameter and confining stress, although the impact of confining stresses reduced for the largest diameter veins. Using a Mohr-Coulomb failure criteria, increased strength was associated with increase in cohesion and reduction in friction angle. The enhanced strength would reduce consolidation processes that would lead to sediment instabilities if the hydrate was destabilized. However, for larger diameter veins, increasing lateral stresses from the soil reduced buckling stresses with significant plastic deformation of the THF veins being observed at the end of tests, suggesting a strain rate dependent behavior. Further research is required to fully understand this behavior and its impact on sediment consolidation to fully consider the relationship between hydrate dissociation and sediment instability.
引用
收藏
页数:17
相关论文
共 50 条
  • [41] Comparison of gyratory compaction effect on coarse and fine-grained soils
    Kaya, Asena Karslioglu
    Yavuz, Emine Hatice
    Ekici, Ilkay
    Balaban, Eren
    Onur, Mehmet Inanc
    JOURNAL OF ENGINEERING RESEARCH, 2025, 13 (01): : 423 - 431
  • [42] Investigation of the Effect of Nanoclay on the Dynamic Properties of Fine-Grained Soils
    Mohammad Mollaei
    Homayoun Jahanian
    Mohammad Azadi
    Indian Geotechnical Journal, 2023, 53 : 170 - 179
  • [43] Modelling the thermo-mechanical behavior of saturated fine-grained soils
    Zhao, Naifeng
    Wang, Lili
    Lu, Yu
    Ye, Weimin
    Jiang, Gang
    Zhang, Rihong
    CANADIAN GEOTECHNICAL JOURNAL, 2025, 62
  • [44] Stress history effects on consolidation and permeability behavior of fine-grained soils
    Prakash, K.
    Sridharan, A.
    JOURNAL OF TESTING AND EVALUATION, 2008, 36 (03) : 250 - 258
  • [45] Estimating compaction behavior of fine-grained soils based on compaction energy
    Sivrikaya, Osman
    Togrol, Ergun
    Kayadelen, Cafer
    CANADIAN GEOTECHNICAL JOURNAL, 2008, 45 (06) : 877 - 887
  • [46] Consolidation behavior of two fine-grained soils contaminated by glycerol and ethanol
    Estabragh, A. R.
    Beytolahpour, I.
    Moradi, M.
    Javadi, A. A.
    ENGINEERING GEOLOGY, 2014, 178 : 102 - 108
  • [47] The compression behavior of riverine fine-grained soils treated with organic matter
    Alfaris, Murtadha A.
    Alrubaye, Aymen A.
    Muttashar, Wisam R.
    Lo, Edward
    SOIL & ENVIRONMENT, 2024,
  • [48] Stress History Effects on Consolidation and Permeability Behavior of Fine-Grained Soils
    Department of Civil Engineering, Sri Jayachamarajendra College of Engineering, Mysore
    570 006, India
    不详
    560 012, India
    J Test Eval, 2008, 3 (250-258):
  • [49] Evaluation of Cyclic Behavior of Fine-Grained Soils Using the Energy Method
    Okur, Volkan
    Ansal, Atilla
    JOURNAL OF EARTHQUAKE ENGINEERING, 2011, 15 (04) : 601 - 619
  • [50] Solidification behavior of fine-grained dredged marine soils: Strength improvement
    1600, E-Journal of Geotechnical Engineering (19):