Saturation Estimation with Complex Electrical Conductivity for Hydrate-Bearing Clayey Sediments: An Experimental Study

被引:3
|
作者
Xing, Lanchang [1 ]
Zhang, Shuli [1 ]
Zhang, Huanhuan [1 ]
Wu, Chenyutong [1 ]
Wang, Bin [1 ]
Lao, Liyun [2 ]
Wei, Wei [3 ]
Han, Weifeng [3 ]
Wei, Zhoutuo [4 ,5 ]
Ge, Xinmin [4 ,5 ]
Deng, Shaogui [4 ,5 ]
机构
[1] China Univ Petr East China, Coll Control Sci & Engn, Qingdao 266580, Peoples R China
[2] Cranfield Univ, Sch Water Energy & Environm, Cranfield MK43 0AL, England
[3] PetroChina Res Inst Petr Explorat & Dev, Dept Alternat Energy, Langfang 065007, Peoples R China
[4] China Univ Petr East China, Sch Geosci, Qingdao 266580, Peoples R China
[5] Qingdao Natl Lab Marine Sci & Technol, Lab Marine Mineral Resources, Qingdao 266071, Peoples R China
基金
中国国家自然科学基金;
关键词
gas hydrate; complex electrical conductivity; hydrate-bearing clayey sediment; hydrate saturation; Simandoux equation; frequency dispersion; Cole-Cole formula; NATURAL-GAS HYDRATE; INDUCED-POLARIZATION; METHANE HYDRATE; SHENHU AREA; PORE HABIT; RESISTIVITY; PERMEABILITY; SAMPLES; MODEL; MORPHOLOGY;
D O I
10.1007/s11802-023-5492-x
中图分类号
P7 [海洋学];
学科分类号
0707 ;
摘要
Clays have considerable influence on the electrical properties of hydrate-bearing sediments. It is desirable to understand the electrical properties of hydrate-bearing clayey sediments and to build hydrate saturation (S-h) models for reservoir evaluation and monitoring. The electrical properties of tetrahydrofuran-hydrate-bearing sediments with montmorillonite are characterized by complex conductivity at frequencies from 0.01 Hz to 1 kHz. The effects of clay and S-h on the complex conductivity were analyzed. A decrease and increase in electrical conductance result from the clay-swelling-induced blockage and ion migration in the electrical double layer (EDL), respectively. The quadrature conductivity increases with the clay content up to 10% because of the increased surface site density of counterions in EDL. Both the in-phase conductivity and quadrature conductivity decrease consistently with increasing S-h from 0.50 to 0.90. Three sets of models for S-h evaluation were developed. The model based on the Simandoux equation outperforms Archie's formula, with a root-mean-square error (E-RMS) of 1.8% and 3.9%, respectively, highlighting the clay effects on the in-phase conductivity. The frequency effect correlations based on in-phase and quadrature conductivities exhibit inferior performance (E-RMS = 11.6% and 13.2%, respectively) due to the challenge of choosing an appropriate pair of frequencies and intrinsic uncertainties from two measurements. The second-order Cole-Cole formula can be used to fit the complex-conductivity spectra. One pair of inverted Cole-Cole parameters, i.e., characteristic time and chargeability, is employed to predict S-h with an E-RMS of 5.05% and 9.05%, respectively.
引用
收藏
页码:173 / 189
页数:17
相关论文
共 50 条
  • [1] Saturation Estimation with Complex Electrical Conductivity for Hydrate-Bearing Clayey Sediments: An Experimental Study
    Lanchang Xing
    Shuli Zhang
    Huanhuan Zhang
    Chenyutong Wu
    Bin Wang
    Liyun Lao
    Wei Wei
    Weifeng Han
    Zhoutuo Wei
    Xinmin Ge
    Shaogui Deng
    Journal of Ocean University of China, 2024, 23 : 173 - 189
  • [2] Saturation Estimation with Complex Electrical Conductivity for Hydrate-Bearing Clayey Sediments:An Experimental Study
    XING Lanchang
    ZHANG Shuli
    ZHANG Huanhuan
    WU Chenyutong
    WANG Bin
    LAO Liyun
    WEI Wei
    HAN Weifeng
    WEI Zhoutuo
    GE Xinmin
    DENG Shaogui
    Journal of Ocean University of China, 2024, 23 (01) : 173 - 189
  • [3] Experimental Study of the Effect of Clay Minerals on the Electrical Characteristics of Clayey Silt Hydrate-Bearing Sediments
    Shi, Yujiang
    Luo, Shaocheng
    Yao, Yabin
    Dong, Huaimin
    Cheng, Daojie
    Qu, Cuixia
    Mu, Yu
    Li, Na
    JOURNAL OF ENERGY ENGINEERING, 2025, 151 (02)
  • [4] Experimental study on the effective thermal conductivity of hydrate-bearing sediments
    Yang, Lei
    Zhao, Jiafei
    Liu, Weiguo
    Yang, Mingjun
    Song, Yongchen
    ENERGY, 2015, 79 : 203 - 211
  • [5] Experimental study on the gas phase permeability of methane hydrate-bearing clayey sediments
    Liu, Weiguo
    Wu, Zhaoran
    Li, Yanghui
    Song, Yongchen
    Ling, Zheng
    Zhao, Jiafei
    Lv, Qin
    JOURNAL OF NATURAL GAS SCIENCE AND ENGINEERING, 2016, 36 : 378 - 384
  • [6] Pore-scale modelling on complex-conductivity responses of hydrate-bearing clayey sediments: Implications for evaluating hydrate saturation and clay content
    Xing, Lanchang
    Zhang, Huanhuan
    Wang, Shuo
    Wang, Bin
    Lao, Liyun
    Wei, Wei
    Han, Weifeng
    Wei, Zhoutuo
    Ge, Xinmin
    Deng, Shaogui
    GEOENERGY SCIENCE AND ENGINEERING, 2023, 221
  • [7] Experimental study of electrical resistivity in tetrahydrofuran hydrate-bearing sediments
    Xian, Fei
    Chen, Ming
    Li, Min
    Dai, Qin
    Xia, Fujun
    Lee, Zizeng
    Hou, Jian
    Liu, XueFeng
    FRONTIERS IN EARTH SCIENCE, 2025, 13
  • [8] Experimental Investigation of Fracture Propagation in Clayey Silt Hydrate-Bearing Sediments
    Yu, Yanjiang
    Shen, Kaixiang
    Zhao, Haifeng
    ENERGIES, 2024, 17 (02)
  • [9] Wave Propagation Characteristics in Gas Hydrate-Bearing Sediments and Estimation of Hydrate Saturation
    Liu, Lin
    Zhang, Xiumei
    Wang, Xiuming
    ENERGIES, 2021, 14 (04)
  • [10] Thermal conductivity of hydrate-bearing sediments
    Cortes, Douglas D.
    Martin, Ana I.
    Yun, Tae Sup
    Francisca, Franco M.
    Santamarina, J. Carlos
    Ruppel, Carolyn
    JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 2009, 114