Strike-slip fault zone architecture and its effect on fluid migration in deep-seated strata: Insights from the Central Tarim Basin

被引:4
|
作者
Liu, Yin [1 ,2 ]
Suppe, John [3 ]
Cao, Yingchang [1 ,2 ]
Wu, Kongyou [1 ]
Wang, Jian [1 ,2 ]
Du, Yannan [1 ]
Liu, Yujie [1 ]
Cao, Zicheng [4 ]
机构
[1] China Univ Petr East China, State Key Lab Deep Oil & Gas, Qingdao 266580, Shandong, Peoples R China
[2] Qingdao Marine Sci & Technol Ctr, Lab Marine Mineral Resources, Qingdao, Shandong, Peoples R China
[3] Univ Houston, Dept Earth & Atmospher Sci, Houston, TX USA
[4] SINOPEC Northwest Oilfield Branch, Explorat & Dev Res Inst, Urumqi, Xinjiang, Peoples R China
基金
中国国家自然科学基金;
关键词
fault zone architecture; fluid migration; geochemistry; strike-slip faults; Tarim Basin; LARGE IGNEOUS PROVINCE; INTERNAL STRUCTURE; DAMAGE ZONES; NUMERICAL-MODEL; TRACE-ELEMENT; PERMEABILITY; EVOLUTION; SYSTEM; ROCKS; FIELD;
D O I
10.1111/bre.12868
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
The internal fault architecture is crucial in assessing the significance of faults in fluid migration. The development of overlapping zones between segments and subsidiary structures is characteristic of a strike-slip faults. However, their internal architectures and roles in fluid migration are still poorly understood. The Tarim Basin's recently identified strike-slip faults imply that the petroleum resource is hosted in caves that were formed by subsequent dissolution after the formation of the fault zones in carbonate rocks, indicating that the internal fault architecture may be closely linked to the accumulation of petroleum. We investigated the architecture of the strike-slip fault zone using field, geochemical, seismic and well-logging data. The results revealed that the strike-slip faults contain flower-like structures in their vertical profiles and an en & eacute;chelon and 'X' conjugate pattern in their horizontal slices. The fault core may become more complex because of the flower structure as fault breccia, slip surfaces, hydrothermal veins, dissolved pores and caves develop, and the damage zone contains multiple stages of fractures with high dip angles. Compared with 'X' pattern conjugate faults, NE-trending strike-slip faults have a more developed and connected fault zone. The fault core acts as a fast conduit for fluid transport and experiences significant elemental losses, and the elemental variations in the damage zone may relate in long-term and relatively lower-level fluid-rock interactions. Three fault zone architecture models were created, namely, a releasing bend, a restraining bend and a single segment, and their controlling impacts on fluid migration were addressed accordingly. Our findings imply that fluid migration and accumulation are more favourable at the releasing bend than at the restraining bend and single segment. The fault zone architecture of strike-slip faults can vary. Based on comprehensive studies in deep-seated carbonate strata, three fault zone models were created and the various roles of fault zone components were discussed. According to our findings, the releasing bends are a better location for fluid migration and buildup.image
引用
收藏
页数:29
相关论文
共 50 条
  • [31] Hydrothermal alteration and hydrocarbon accumulations in ultra-deep carbonate reservoirs along a strike-slip fault system, Tarim Basin, NW China
    Su, Jin
    Wang, Xiaomei
    Yang, Haijun
    Yu, Fang
    Li, Yong
    Ma, Sihong
    Wei, Caiyun
    Weng, Na
    Yang, Yupeng
    JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING, 2021, 203
  • [32] The Middle and Lower Cambrian salt tectonics in the central Tarim Basin, China: A case study based on strike-slip fault characterization
    Bian, Qing
    Zhang, Jibiao
    Huang, Cheng
    ENERGY GEOSCIENCE, 2024, 5 (02):
  • [33] Permeability distribution and scaling in multi-stages carbonate damage zones: Insight from strike-slip fault zones in the Tarim Basin, NW China
    Wu, Guanghui
    Zhao, Kuanzhi
    Qu, Haizhou
    Scarselli, Nicola
    Zhang, Yintao
    Han, Jianfa
    Xu, Yifeng
    MARINE AND PETROLEUM GEOLOGY, 2020, 114
  • [34] Deformation characteristics and genesis of the No. 12 strike-slip fault in the Shunbei area, Tarim Basin: insights from 3D seismic data and physical simulation
    Shi, Shuaiyu
    Ding, Wenlong
    Han, Jun
    Cheng, Xiaoyun
    Huang, Cheng
    CARBONATES AND EVAPORITES, 2024, 39 (04)
  • [35] Strike-slip fault System and its reservoir-controlling rules in Awati-Manger-transitional area, Tarim basin
    Qi, Jiafu
    Chen, Shi
    Luo, Caiming
    Huang, Shaoying
    Neng, Yuan
    Dizhi Xuebao/Acta Geologica Sinica, 2024, 98 (12): : 3662 - 3682
  • [36] Spatial-temporal distribution of fluid activities and its significance for hydrocarbon accumulation in the strike-slip fault zones, Shuntuoguole low-uplift, Tarim Basin
    Li H.
    Gao J.
    Cao Z.
    Zhu X.
    Guo X.
    Zeng S.
    Earth Science Frontiers, 2023, 30 (06) : 316 - 328
  • [37] Fault zone architecture of a large plate-bounding strike-slip fault: a case study from the Alpine Fault, New Zealand
    Schuck, Bernhard
    Schleicher, Anja M.
    Janssen, Christoph
    Toy, Virginia G.
    Dresen, Georg
    SOLID EARTH, 2020, 11 (01) : 95 - 124
  • [38] Quantitative anisotropies of palaeopermeability in a strike-slip fault damage zone: Insights from micro-CT analysis and numerical simulations
    Gomila, R.
    Arancibia, G.
    Nehler, M.
    Bracke, R.
    Morata, D.
    Cembrano, J.
    TECTONOPHYSICS, 2021, 810
  • [39] Two distinct strike-slip fault networks in the Shunbei area and its surroundings, Tarim Basin: Hydrocarbon accumulation, distribution, and controlling factors
    Deng, Shang
    Zhao, Rui
    Kong, Qiangfu
    Li, Yingtao
    Li, Bing
    AAPG BULLETIN, 2022, 106 (01) : 77 - 102
  • [40] Miocene-to-recent structure and basinal architecture along the Central Range strike-slip fault zone, eastern offshore Trinidad
    Soto, David
    Mann, Paul
    Escalona, Alejandro
    MARINE AND PETROLEUM GEOLOGY, 2011, 28 (01) : 212 - 234