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高校地质学报 ›› 2025, Vol. 31 ›› Issue (04): 405-417.DOI: 10.16108/j.issn1006-7493.2024065

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库车坳陷克拉苏构造带东段盐下多滑脱构造变形:来自数值模拟的启示

吴 超1,徐雯峤2*,莫 涛1,汪 伟3,董瑞霞1,贺婉慧2,胡春雷1,高子涵2,顾成龙1,尹宏伟2
  

  1. 1. 中国石油 塔里木油田分公司 勘探开发研究院,库尔勒 841000;
    2. 南京大学 地球科学与工程学院,南京 210023;
    3. 中国科学院 南京地质古生物研究所, 南京 210008
  • 出版日期:2025-08-20 发布日期:2025-08-20

Subsalt Multi-detachment Deformation in the Eastern Segment of the Kelasu Structural Belt of the Kuqa Depression: Insights from Numerical Simulations

WU Chao1,XU Wenqiao2*,MO Tao1,WANG Wei2,DONG Ruixia1,HE Wanhui2,HU Chunlei1,GAO Zihan2,GU Chenglong1,YIN Hongwei2#br#   

  1. 1. Exploration and Development Research Institute, PetroChina Tarim Oilfield Company, Korla 841000, China;
    2. School of Earth Sciences and Engineering, Nanjing University, Nanjing 210023, China;
    3. Nanjing Institute of Geology and Palaeontology, Chinese Academy of Sciences, Nanjing 210008, China
  • Online:2025-08-20 Published:2025-08-20

摘要: 库车褶皱冲断带是一个典型的含多套滑脱层的复杂含盐褶皱冲断系统。文章依托高质量三维地震资料解析,发现克拉
苏构造带东段盐下存在多滑脱层变形,侏罗系煤系地层和三叠系滑脱层均为盐下主要滑脱层。采用离散元数值模拟方法,设计了2组数值模拟实验来探究盐下滑脱层分布对含盐的褶皱冲断带构造形态及演化的影响,从而分析克拉苏构造带东段的构造变形特征和机制及其对油气的影响。模拟结果表明,盐下多滑脱层的存在有利于形成多个断坡—断坪—断坡褶皱,盐下构造变形复杂。煤层滑脱层的存在使盐下前缘变形发生弱解耦变形,断层间距小且位移量小,断层不直接断穿盐下层。盐下单滑脱模型盐下构造变形较一致,断层直接向上与盐岩层沟通。其中盐下断层间距较大,断层位移量较大,断片数量少。通过将模拟结果与库车坳陷克拉苏构造带东段构造特征进行对比分析,克拉苏构造带东段受盐下多滑脱层影响变形复杂,煤层主要起到滑脱的作用,煤上层变形强于煤下层,深部断裂未向上沟通,盐下多滑脱层的存在使三叠系和侏罗系地层可分别形成两套成藏体系,侏罗系和三叠系油气分层运聚,可能存在多个小型圈闭。三叠系烃源岩生烃量大,且煤下层滑脱逆冲断裂位移量小,结构相对简单,油气勘探潜力较大。

关键词: 库车坳陷, 克拉苏构造, 多滑脱层, 离散元, 应力应变, 构造变形

Abstract:

The Kuqa fold-thrust belt is a typical complex salt-bearing fold-thrust system with multiple detachment layers. Based

on the analysis of high-quality continuous 3D seismic data, it has been discovered that there are multiple detachment layers beneath the salt in the eastern segment of the Kelasu structural belt. Both the Jurassic coal-bearing strata and the Triassic detachment layers serve as the primary subsalt detachment layers. Using the discrete element numerical simulation method, two sets of numerical simulation experiments were designed to investigate the impacts of the distribution of subsalt detachment layers on the structural geometry and evolution of the salt-bearing fold-thrust belt. This helped to analyze the structural deformation characteristics and mechanisms of the eastern segment of the Kelasu structural belt and implications for oil and gas exploration. The simulation results indicate that the presence of multiple subsalt detachment layers promotes the formation of multiple rampflat-
ramp fold structures, with complex subsalt deformation. The presence of coal detachment layer leads to a weakly decoupled deformation at the deformation front, characterized by small fault spacings and displacements, with faults not directly penetrating through the sub-salt layers. In the single subsalt detachment model, the subsalt structural deformation is relatively consistent, with faults directly connecting upwards to the salt layer. In this model, the fault spacing is larger, fault displacement is greater, and there are fewer fault-separated blocks. By comparing the simulation results with the structural characteristics of the eastern segment of the Kelasu structural belt in the Kuqa depression, it was found that the deformation in the eastern segment of the Kelasu structural belt is complex due to the influence of multiple subsalt detachment layers. The coal bed primarily serves as a detachment layer, with stronger deformation above the coal layer than below. Deep faults do not propagate through the sub-salt layer. The presence of multiple subsalt detachment layers may result in the formation of two independent reservoir systems in the Triassic and Jurassic strata. Hydrocarbon migration and accumulation in the Jurassic and Triassic strata occur separately, and there may be multiple small traps. The Triassic source rocks generate abundant hydrocarbons, and the faults below the coal layer have small displacements and consist of relatively simple structures, indicating considerable potential for hydrocarbon exploration. 

Key words: Kuqa depression, Kelasu structural belt, multiple detachment layer, discrete element, stress-strain, tectonic
deformation

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