Hu Qiuyuan, Li Li. Numerical simulations of tectonic stress fields for Late Mesozoic-Paleogene extensional tectonics in western Shandong[J]. PETROLEUM GEOLOGY & EXPERIMENT, 2015, 37(2): 259-266. doi: 10.11781/sysydz201502259
Citation: Hu Qiuyuan, Li Li. Numerical simulations of tectonic stress fields for Late Mesozoic-Paleogene extensional tectonics in western Shandong[J]. PETROLEUM GEOLOGY & EXPERIMENT, 2015, 37(2): 259-266. doi: 10.11781/sysydz201502259

Numerical simulations of tectonic stress fields for Late Mesozoic-Paleogene extensional tectonics in western Shandong

doi: 10.11781/sysydz201502259
  • Received Date: 2014-10-09
  • Rev Recd Date: 2015-01-20
  • Publish Date: 2015-03-28
  • Extensional tectonics in the West Shandong Uplift were examined and geological models were established using field geological survey data of the western Shandong and the geophysical data of the Jiyang Depression. Based on a finite element method, we adopted the Ansys12.0 software to carry out a 3D tectonic stress field numerical simulation of the extensional tectonic evolution of the study area from the Late Mesozoic to Paleogene, which fit well with the actual geological conditions. The results indicated that the tectonic stress field evolved from strong to weak from the Late Mesozoic to Paleogene, and the maximum principal stress axis transferred from NW-SE to NWW-SEE, and then to NE-SW, which was a major shift. Paleocene-Early Eocene was a transitional period with its stretching orientation transformed from NE-SW to NS, and Eocene-Oligocene was a significant phase for uplift-depression differentiation when the West Shandong Uplift and the Jiyang Depression became separated and evolved separately. This evolution regularity had an important control on the migration and accumulation of oil and gas in the Jiyang Depression and the enrichment of metallic minerals in the West Shandong Uplift. The essential factors leading to the tectonic evolution were the changes of the Pacific Plate subduction, the strike slipping motion along the major boundary fractures, and the magma under plating.

     

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  • [1]
    Stephansson O,Berner H.Finite element method in tectonic processes[J].Physics of the Earth & Planetary Interiors,1971,4(4):301-321.
    [2]
    张贵宾,Bott M H P.半地堑盆地演化机制的粘弹塑数值模拟[J].地学前缘,2000,7(4):441-448. Zhang Guibin,Bott M H P.Modelling the evolution of a half graben basin using elasto-viscoplastic finite element analysis[J].Earth Science Frontiers,2000,7(4):441-448.
    [3]
    Huerta A D,Harry D L.The transition from diffuse to focused extension:Modeled evolution of the West Antarctic Rift system[J].Earth and Planetary Science Letters,2007,255(1/2):133-147.
    [4]
    Cacace M,Bayer U,Marotta A M.Late Cretaceous-Early Tertiary tectonic evolution of the Central European Basin System (CEBS):Constraints from numerical modeling[J].Tectonophy-sics,2009,470(1/2):105-128.
    [5]
    Lu Yuanzhong,Yang Shuxin,Chen Lianwang,et al.Migration trend of strong earthquakes in North China from numerical simulations[J].Journal of Asian Earth Sciences,2012,50:116-127.
    [6]
    Li Li, Zhong Dalai, Shi Xiupeng, et al. Late Mesozoic-Cenozoic décollement structure and its deep geological background in western Shandong,China[J].Progress in Natural Science,2009,19(5):603-613.
    [7]
    李三忠,王金铎,刘建忠,等.鲁西地块中生代构造格局及其形成背景[J].地质学报,2005,79(4):487-497. Li Sanzhong,Wang Jinduo,Liu Jianzhong,et al.Mesozoic structure and its tectonic setting in the western Shandong Block[J].Acta Geologica Sinica,2005,79(4):487-497.
    [8]
    李临华.鲁西中新生代盆地充填序列及盆地类型[J].油气地质与采收率,2009,16(3):50-53. Li Linhua.Mesozoic-Cenozoic sedimentary sequence and depositio-nal basin types in the western Shandong[J].Petroleum Geology and Recovery Efficiency,2009,16(3):50-53.
    [9]
    姜慧超,张勇,任凤楼,等.济阳、临清坳陷及鲁西地区中新生代构造演化对比分析[J].中国地质,2008,35(5):963-974. Jiang Huichao,Zhang Yong,Ren Fenglou,et al.Comparative analysis of Meso-Cenozoic tectonic evolutions of the Jiyang and Linqing depressions and Luxi area[J].Geology in China,2008,35(5):963-974.
    [10]
    李理,钟大赉,杨长春,等.渤海湾盆地济阳坳陷滑脱构造研究[J].地球物理学报,2009,51(2):521-530. Li Li,Zhong Dalai,Yang Changchun,et al.The décollement structures in Jiyang Depression,Bohai Bay basin,China[J].Geophys,2008,51(2):521-530.
    [11]
    Northrup C J,Royden L H,Burchfiel B C.Motion of the Pacific plate relative to Eurasia and its potential relation to Cenozoic extension along the eastern margin of Eurasia[J].Geology,1995,23(8):719-722.
    [12]
    徐嘉炜,朱光,吕培基,等.郯庐断裂带平移年代学研究的进展[J].安徽地质,1995,5(1):1-12. Xu Jiawei,Zhu Guang,Lü Peiji,et al.Progress in studies on strike-slip chronology of the Tan-Lu fault zone [J].Geology of Anhui,1995,5(1):1-12.
    [13]
    吴国强,吕修祥,周心怀,等.新生代郯庐断裂活动在莱州湾地区的响应[J].石油实验地质,2013,35(4):407-413. Wu Guoqiang,Lü Xiuxiang,Zhou Xinhuai,et al.Response of Cenozoic Tan-Lu fault activity in Laizhou Bay area,Bohai Sea[J].PetroleumGeology & Experiment,2013,35(4):407-413.
    [14]
    李理,钟大赉.泰山新生代抬升的裂变径迹证据[J].岩石学报,2006,22(2):457-464. Li Li,Zhong Dalai.Fission track evidence of Cenozoic uplifting events of the Taishan Mountain,China[J].Acta Petrologica Sinica,2006,22(2):457-464.
    [15]
    唐智博,李理,时秀朋,等.鲁西隆起蒙山晚白垩世—新生代抬升的裂变径迹证据[J].中山大学学报:自然科学版,2011,50(2):127-133. Tang Zhibo,Li Li,Shi Xiupeng,et al.Fission track thermochronology of Late Cretaceous-Cenozoic Uplifting events of the Mengshan Mountain in the Western Shandong Rise,China[J].Acta Scientiarum Naturalium Universitatis Sunyatseni,2011,50(2):127-133.
    [16]
    于建国,韩文功,王金铎.中国东部断陷盆地中—新生代构造演化[M].北京:石油工业出版社,2009:35-47. Yu Jianguo,Han Wengong,Wang Jinduo.Tectonic evolution of the Mesozoic-Cenozoic fault basin in eastern China[M].Beijing:Petroleum Industry Press,2009:35-47.
    [17]
    Maruyama S,Isozaki Y,Kimura G,et al.Paleogeographic maps of the Japanese Islands:Plate tectonic synthesis from 750 Ma to the present[J].The Island Arc,1997,6(1):121-142.
    [18]
    许文良,王清海,王冬艳,等.华北克拉通东部中生代岩石圈减薄的过程与机制:中生代火成岩和深源捕虏体证据[J].地学前缘,2004,11(3):309-317. Xu Wenliang,Wang Qinghai,Wang Dongyan,et al.Processes and mechanism of Mesozoic lithospheric thinning in eastern North China Craton:Evidence from Mesozoic igneous rocks and deep-seated xenoliths[J].Earth Science Frontiers,2004,11(3):309-317.
    [19]
    李三忠,索艳慧,戴黎明,等.渤海湾盆地形成与华北克拉通破坏[J].地学前缘,2010,17(4):64-89. Li Sanzhong,Suo Yanhui,Dai Liming,et al.Development of the Bohai Bay Basin and destruction of the North China Craton[J].Earth Science Frontiers,2010,17(4):64-89.
    [20]
    徐述平,杨立强,高帮飞.鲁西地区金矿类型与找矿方向[J].黄金科学技术,2007,15(5):18-23. Xu Shuping,Yang Liqiang,Gao Bangfei.The types of gold and ore-searching direction in Western Shandong Province[J].Gold Science and Technology,2007,15(5):18-23.
    [21]
    任建业,张青林.东营凹陷中央背斜隆起带形成机制分析[J].大地构造与成矿学,2004,28(3):254-262. Ren Jianye,Zhang Qinglin.Analysis of development mechanism for center anticline high in Dongying Depression[J].Geotectonica et Metallogenia,2004,28(3):254-262.
    [22]
    路慎强,陈冠军,吴孔友,等.渤海湾盆地东营凹陷中央背斜带构造特征和演化机理[J].石油实验地质,2013,35(3):274-279. Lu Shenqiang,Chen Guanjun,Wu Kongyou,et al.Tectonic feature and evolution mechanism of central anticline belt of Dong-ying Sag,Bohai Bay Basin[J].Petroleum Geology & Experiment,2013,35(3):274-279.
    [23]
    韩文功,季建清,王金铎.郯庐断裂带古新世—早始新世左旋走滑活动的反射地震证据[J].自然科学进展,2005,15(11):1383-1388. Han Wengong,Ji Jianqing,Wang Jinduo.The seismic evidence of Tan-Lu fault's left-lateral strike-slip from Palaeocene to Early Eocene[J].Progress in Natural Science,2005,15(11):1383-1388.
    [24]
    李理,钟大赉,时秀朋.鲁西隆起和济阳坳陷新生代隆坳耦合关系[J].地质学报,2007,81(9):1215-1228. Li Li,Zhong Dalai,Shi Xiupeng.Cenozoic uplifting/subsidence coupling between the West Shandong Rise and the Jiyang Depression,Northern China[J].Acta Geologica Sinica,2007,81(9):1215-1228.
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