张飞鹏,陈兴鹏,吴佳朋,等. X型正断层构造特征及其构造物理模拟[J]. 海洋地质前沿,2022,38(9):48-58. DOI: 10.16028/j.1009-2722.2021.158
    引用本文: 张飞鹏,陈兴鹏,吴佳朋,等. X型正断层构造特征及其构造物理模拟[J]. 海洋地质前沿,2022,38(9):48-58. DOI: 10.16028/j.1009-2722.2021.158
    ZHANG Feipeng, CHEN Xingpeng, WU Jiapeng, et al. Structural characteristics and physical simulation of X-shaped normal faults[J]. Marine Geology Frontiers, 2022, 38(9): 48-58. DOI: 10.16028/j.1009-2722.2021.158
    Citation: ZHANG Feipeng, CHEN Xingpeng, WU Jiapeng, et al. Structural characteristics and physical simulation of X-shaped normal faults[J]. Marine Geology Frontiers, 2022, 38(9): 48-58. DOI: 10.16028/j.1009-2722.2021.158

    X型正断层构造特征及其构造物理模拟

    Structural characteristics and physical simulation of X-shaped normal faults

    • 摘要: X型正断层是常见的伸展构造样式,其几何学特征、形成过程及成因机制缺乏系统研究。基于地震资料精细解释和构造物理模式实验,明确几何学特征,重构其形成过程,明确形成机制,并探讨控藏作用。研究结果表明,X型正断层分为新生型和继承型2大类。继承型X型正断层是基底断裂复活形成的,包括差异伸展和双向均匀伸展2种模式;新生型X正断层形成于张应力和剪应力配比关系为1:2~2:1范围内的应力背景;继承型X型正断层具有较好油气运移、储层改造等优势并且形成多类型圈闭,具有“多层楼”式的成藏模式。X型正断层的研究丰富了构造样式研究的理论认识,建立了合理的地质模型,为构造精细解释提供依据。

       

      Abstract: The X-shaped normal fault is a common extensional tectonic fracture. However, its geometric characteristics, formation process, and genetic mechanism are lack of systematic research. Based on fine interpretation of seismic data and physical modelling, the geometric characteristics are clarified, the formation process is reconstructed, the formation mechanism is confirmed, and the reservoir control effect is discussed. The research result indicates that the X-shaped normal fault can be divided into two types: incipient X-shaped normal faults and the inherited X-shaped normal faults. The inherited X-shaped normal faults are formed by the reactivation of basement faults, including two modes of differential extension and bidirectional uniform extension. The incipient X-shaped normal faults are formed under the stress background whose tensile stress vs shear stress ratio is 1:2 ~ 2:1. In addition, the inherited X-shaped normal faults have advantages of good oil and gas migration and reservoir reconstruction. Meanwhile, they form various traps and feature “multi-storey”-styled oil-gas accumulation. This research provided a reference for hydrocarbon exploration in Bohai Bay basin, enriched the theoretical understanding of the structural patterns with a geological cue for fine structural interpretation of similar cases.

       

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