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塔中隆起NNE向走滑断裂特征及形成机制

杨勇, 汤良杰, 郭颖, 谢大庆

杨勇, 汤良杰, 郭颖, 谢大庆. 塔中隆起NNE向走滑断裂特征及形成机制[J]. 中国地质, 2016, 43(5): 1569-1578. DOI: 10.12029/gc20160507
引用本文: 杨勇, 汤良杰, 郭颖, 谢大庆. 塔中隆起NNE向走滑断裂特征及形成机制[J]. 中国地质, 2016, 43(5): 1569-1578. DOI: 10.12029/gc20160507
YANG Yong, TANG Liang-jie, GUO Ying, XIE Da-qing. Deformation characteristics and formation mechanism of NNE-trending strike-slip faults in Tazhong Uplift[J]. GEOLOGY IN CHINA, 2016, 43(5): 1569-1578. DOI: 10.12029/gc20160507
Citation: YANG Yong, TANG Liang-jie, GUO Ying, XIE Da-qing. Deformation characteristics and formation mechanism of NNE-trending strike-slip faults in Tazhong Uplift[J]. GEOLOGY IN CHINA, 2016, 43(5): 1569-1578. DOI: 10.12029/gc20160507

塔中隆起NNE向走滑断裂特征及形成机制

基金项目: 

国家自然科学基金项目 4097209 and 41572105

国家专项“深部探测与实验研究” SinoProbe-08-01

详细信息
    作者简介:

    杨勇,男,1986年生,助理研究员,主要从事含油气盆地构造分析方面的研究;E-mail:yy349971854@163.com

  • 中图分类号: P542+.3

Deformation characteristics and formation mechanism of NNE-trending strike-slip faults in Tazhong Uplift

Funds: 

State Natural Science Foundation Program 4097209 and 41572105

Technology Major Project“Deep Exploration and Research” SinoProbe-08-01

More Information
    Author Bio:

    YANG Yong, male, born in 1986, associate researcher, engages in the study of structural analysis of oil andgas bearing basins;E-mail:yy349971854@163.com

  • 摘要:

    为了确定塔中隆起NNE向走滑断裂特征及形成机制,利用构造要素相关性分析及构造解析方法,通过对二维和三维资料的解释,揭示了走滑断裂的构造变形特征,确定了走滑断裂的形成机制。NNE向走滑断裂在地震剖面上表现为压扭和张扭在垂向上叠加的特点,其形成演化主要经历了中奥陶世末压扭和晚志留世-中泥盆世张扭两个阶段。先存基底软弱带和塔里木板块周缘造山带的演化共同控制了这套走滑断裂的形成。中奥陶世末,塔里木板块南缘洋盆俯冲闭合产生的近南北向挤压应力斜向作用于NNE向的基底软弱带之上,导致断裂上部地层被撕裂产生走滑分量,从而形成了北东向的左旋走滑断裂系统,同时,来自塔里木板块西北缘的挤压应力垂向作用于走滑断裂上,导致NNE向走滑断裂发生压扭变形。晚志留世-中泥盆世,塔里木板块南缘的挤压应力继续斜向作用于NNE向走滑断裂之上导致其继续发生走滑变形,同时,来自塔里木盆地西北缘的NW向伸展应力垂向作用于走滑断裂上,导致NNE向走滑断裂发生张扭变形。

    Abstract:

    In this study, the correlation method of structural factors and structural analysis were used to determine the formation mechanism of NNE-trending strike-slip faults in the Tazhong Uplift. The interpretation of 2D and 3D seismic data revealed deformation characteristics of the NNE-striking faults and determined their formation mechanism. NNE-trending strike-slip faults exhibit vertical superposition of compresso-shear faults and tenso-shear faults in seismic profiles. They have experienced two stages of activities:the late Ordovician compresso-shear faulting and the late Silurian-middle Devonian tenso-shear faulting. The formation of the NNE-trending strike-slip faults was controlled by the pre-existing basement weak zone and the evolution of the orogenic belts around Tarim plate. At the end of Middle Ordovician, a NS-trending compressive stress was generated by the subduction and closure of the ocean basin on the south margin of Tarim plate, and it acted on the NE-trending basement weak zone, resulting in the formation of NNE-trending strike-slip faults.Meanwhile, the compressive stress from the northwest margin of Tarim plate vertically acted on the NNE-striking strike-slip fault, leading to the compresso-shear deformation. In late Silurianmiddle Devonian period, the NS-trending compressive stress continually acted on the strike-slip faults, resulting in continued strike-slip deformation. Moreover, the extensional stress from the northwest margin of Tarim plate vertically acted on the NNEstriking strike-slip fault, leading to the tenso-shar deformation.

  • 图  1   塔中隆起断裂分布图(a)和地质剖面(b)

    Figure  1.   Fault distribution(a)and geological section(b)of Tazhong uplift,Tarim Basin

    图  2   塔中隆起北坡走滑断裂的二维地震剖面(剖面位置见图 1

    Figure  2.   2D seismic section of strike-slip fault on the northern slope of Tazhong Uplift

    图  3   塔中隆起北坡顺北三维区雁列式断层平面展布(左)和地震剖面(右)(顺北三维区位置见图 1

    Figure  3.   Distribution map and 3D seismic section of en-echelon faults in Shunbei 3D area,northern slope of Tazhong Uplift

    图  4   塔中隆起北坡顺南三维区走滑断裂的地震剖面(剖面位置见图 1

    Figure  4.   3D Seismic section of strike-slip fault in Shunnan 3D area,northern slope of Tazhong Uplift

    图  5   卡1 三维区走滑断裂的地震剖面(卡1三维区位置见图 1

    Figure  5.   3D seismic section of strike-slip fault in Ka 1 3D area, Tazhong Uplift

    图  6   塔中82 井区奥陶系碳酸盐岩顶面立体图与地震剖面(据文献[13]修改)

    (塔中82 井三维区位置见图 1

    Figure  6.   Structural map and seismic section of Ordovician carbonate in TZ82 strike-slip fault,Tazhong uplift

    图  7   塔中隆起NNE向走滑断裂压扭变形和张扭变形的动力学背景

    Figure  7.   Dynamic background of compresso-shear deformation and tenso-shear deformation of the NNE-trending strike-slip faults, Tazhong Uplift

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出版历程
  • 收稿日期:  2015-10-25
  • 修回日期:  2016-05-19
  • 网络出版日期:  2023-09-25
  • 刊出日期:  2016-10-24

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