In situ thermal conductivity of gas-hydrate-bearing sediments of the Mallik 5L-38 well

被引:81
|
作者
Henninges, J [1 ]
Huenges, E
Burkhardt, H
机构
[1] Geoforschungszentrum Potsdam, Sect Geotherm, D-14473 Potsdam, Germany
[2] Tech Univ Berlin, Fachgebiet Angew Geophys, D-13355 Berlin, Germany
关键词
D O I
10.1029/2005JB003734
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
[1] Detailed knowledge about thermal properties of rocks containing gas hydrate is required in order to quantify processes involving gas hydrate formation and decomposition in nature. In the framework of the Mallik 2002 program, three wells penetrating a continental gas hydrate occurrence under permafrost were successfully equipped with permanent fiber-optic distributed temperature sensing cables. Temperature data were collected over a 21-month period after completing the wells. Thermal conductivity profiles were calculated from the geothermal data as well as from a petrophysical model derived from the available logging data and application of mixing law models. Results indicate that thermal conductivity variations are mainly lithologically controlled with a minor influence from hydrate saturation. Average thermal conductivity values of the hydrate-bearing sediments range between 2.35 and 2.77 W m(-1) K-1. Maximum gas hydrate saturations can reach up to about 90% at an average porosity of 0.3.
引用
收藏
页码:1 / 11
页数:12
相关论文
共 50 条
  • [31] Dependence of thermal conductivity on the phase transition of gas hydrate in clay sediments
    Wei, Rupeng
    Xia, Yongqiang
    Qu, Aoxing
    Lv, Xin
    Fan, Qi
    Zhang, Lunxiang
    Zhang, Yi
    Zhao, Jiafei
    Yang, Lei
    FUEL, 2022, 317
  • [32] In situ characterisation of gas hydrate-bearing clayey sediments in the Gulf of Guinea
    Taleb, F.
    Garziglia, S.
    Sultan, N.
    CONE PENETRATION TESTING 2018, 2018, : 599 - 604
  • [33] Measuring and modeling thermal conductivity of gas hydrate-bearing sand
    Huang, DZ
    Fan, SS
    JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 2005, 110 (B1) : 1 - 10
  • [34] Discrete Element Simulation of the Macro-Meso Mechanical Behaviors of Gas-Hydrate-Bearing Sediments under Dynamic Loading
    Jiang, Yujing
    Li, Meng
    Luan, Hengjie
    Shi, Yichen
    Zhang, Sunhao
    Yan, Peng
    Li, Baocheng
    JOURNAL OF MARINE SCIENCE AND ENGINEERING, 2022, 10 (08)
  • [35] Estimates of in situ gas hydrate concentration from resistivity monitoring of gas hydrate bearing sediments during temperature equilibration
    Riedel, M
    Long, PE
    Collett, TS
    MARINE GEOLOGY, 2006, 227 (3-4) : 215 - 225
  • [36] Effect of Hydrate Formation Conditions on Thermal Conductivity of Gas-Saturated Sediments
    Chuvilin, Evgeny
    Bukhanov, Boris
    ENERGY & FUELS, 2017, 31 (05) : 5246 - 5254
  • [37] A new effective thermal conductivity model of methane hydrate-bearing sediments considering hydrate distribution patterns
    Sun, Shicai
    Gu, Linlin
    Yang, Zhendong
    Li, Yanmin
    Zhang, Changxing
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2022, 183
  • [38] Characterization of in situ elastic properties of gas hydrate-bearing sediments on the Blake Ridge
    Guerin, G
    Goldberg, D
    Meltser, A
    JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 1999, 104 (B8) : 17781 - 17795
  • [39] Hydromechanical Properties of Gas Hydrate-Bearing Fine Sediments From In Situ Testing
    Taleb, F.
    Garziglia, S.
    Sultan, N.
    JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 2018, 123 (11) : 9615 - 9634
  • [40] Invasion of drilling mud into gas-hydrate-bearing sediments. Part II: effects of geophysical properties of sediments (vol 193, pg 1385, 2013)
    Ning, Fulong
    Wu, Nengyou
    Yu, Yibing
    Zhang, Keni
    Jiang, Guosheng
    Zhang, Ling
    Sun, Jiaxin
    Zheng, Mingming
    GEOPHYSICAL JOURNAL INTERNATIONAL, 2014, 197 (02) : 1271 - 1271