Empirical evaluation of the strength and deformation characteristics of natural and synthetic gas hydrate-bearing sediments with different ranges of porosity, hydrate saturation, effective stress, and strain rate

被引:1
作者
Yoneda, Jun [1 ]
Suzuki, Kiyofumi [2 ]
Oshima, Motoi [1 ]
Muraoka, Michihiro [2 ]
Jin, Yusuke [1 ]
机构
[1] Natl Inst Adv Ind Sci & Technol, Tsukisamuhigashi 2-17-2-1,Toyohira Ku, Sapporo, Hokkaido 0628517, Japan
[2] Natl Inst Adv Ind Sci & Technol, Onogawa 16-1, Tsukuba, Ibaraki 3058569, Japan
关键词
Methane hydrate; Pressure core; Strength; Stiffness; Young's modulus; Triaxial test; Uniaxial test; METHANE HYDRATE; MECHANICAL-BEHAVIOR; RESERVOIR; SAND; APPARATUS;
D O I
10.1186/s40645-024-00606-1
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Evaluating the mechanical properties of gas (primarily methane) hydrate-bearing sediments is essential for commercial production as a next-generation resource and understanding the global carbon cycle. Triaxial and uniaxial compression tests have been conducted on synthetic gas hydrate and natural core samples recovered from deep-sea beds using pressure coring techniques. The results show that four factors are vital in establishing the strength of hydrate-bearing sediments: hydrate saturation, effective confining stress, porosity, and strain rate. However, no study has evaluated these factors in a unified and quantitative manner, and even if the physical properties of the reservoir are known in detail from logging, predicting the strength has been challenging. In this study, pressure cores were drilled and recovered from the Eastern Nankai Trough in April 2018 after Japan's second offshore production test, and triaxial or uniaxial compression tests were performed on 12 pressure core samples brought back to the laboratory. The mechanical properties of the hydrate-bearing sediments were classified with previous obtained results from 53 pressure cores and 223 synthetic cores, and empirical equations for triaxial compressive strength and deformation modulus were proposed as functions of gas hydrate saturation, effective confining pressure, porosity, and strain rate. The obtained equations were found to correlate well with the experimental data and can predict the strength and deformation modulus from logging data.
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页数:18
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共 71 条
[1]   THE STRENGTH AND DILATANCY OF SANDS [J].
BOLTON, MD .
GEOTECHNIQUE, 1986, 36 (01) :65-78
[2]   Multistage Triaxial Tests on Laboratory-Formed Methane Hydrate-Bearing Sediments [J].
Choi, Jeong-Hoon ;
Dai, Sheng ;
Lin, Jeen-Shang ;
Seol, Yongkoo .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 2018, 123 (05) :3347-3357
[3]   Laboratory formation of noncementing hydrates in sandy sediments [J].
Choi, Jeong-Hoon ;
Dai, Sheng ;
Cha, Jong-Ho ;
Seol, Yongkoo .
GEOCHEMISTRY GEOPHYSICS GEOSYSTEMS, 2014, 15 (04) :1648-1656
[4]   The effects of disseminated methane hydrate on the dynamic stiffness and damping of a sand [J].
Clayton, CRI ;
Priest, JA ;
Best, AI .
GEOTECHNIQUE, 2005, 55 (06) :423-434
[5]   India National Gas Hydrate Program Expedition 02 Summary of Scientific Results: Gas hydrate systems along the eastern continental margin of India [J].
Collett, Timothy S. ;
Boswell, Ray ;
Waite, William F. ;
Kumar, Pushpendra ;
Roy, Sandip Kumar ;
Chopra, Krishan ;
Singh, Sunil Kumar ;
Yamada, Yasuhiro ;
Tenma, Norio ;
Pohlman, John ;
Zyrianova, Margarita .
MARINE AND PETROLEUM GEOLOGY, 2019, 108 :39-142
[6]  
Craig RF., 1997, SOIL MECH, VSixth
[7]   The strength and rheology of methane clathrate hydrate [J].
Durham, WB ;
Kirby, SH ;
Stern, LA ;
Zhang, W .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 2003, 108 (B4)
[8]   Bulk sediment mineralogy of gas hydrate reservoir at the East Nankai offshore production test site [J].
Egawa, Kosuke ;
Nishimura, Okio ;
Izumi, Shoko ;
Fukami, Eiji ;
Jin, Yusuke ;
Kida, Masato ;
Konno, Yoshihiro ;
Yoneda, Jun ;
Ito, Takuma ;
Suzuki, Kiyofumi ;
Nakatsuka, Yoshihiro ;
Nagao, Jiro .
MARINE AND PETROLEUM GEOLOGY, 2015, 66 :379-387
[9]   Submarine slope failures due to pipe structure formation [J].
Elger, Judith ;
Berndt, Christian ;
Ruepke, Lars ;
Krastel, Sebastian ;
Gross, Felix ;
Geissler, Wolfram H. .
NATURE COMMUNICATIONS, 2018, 9
[10]   Compression behavior of hydrate-bearing sediments [J].
Fang, Yi ;
Flemings, Peter B. ;
Germaine, John T. ;
Daigle, Hugh ;
Phillips, Stephen C. ;
O'Connell, Josh .
AAPG BULLETIN, 2022, 106 (05) :1101-1126