期刊文献+

Episodic Orogeny Deduced from Coeval Sedimentary Sequences in the Foreland Basin and Its Implication for Uplift Process of Longmen Mountain,China 被引量:3

Episodic Orogeny Deduced from Coeval Sedimentary Sequences in the Foreland Basin and Its Implication for Uplift Process of Longmen Mountain,China
下载PDF
导出
摘要 Longmen Mountain located at the boundary between the Sichuan Basin and Tibetan Plateau,representing the steepest gradient of any edges of the plateau.Three endmember models of uplift process and mechanism have been proposed,including crustal thickening,crustal flow,and crustal isostatic rebound.Here we use coeval sedimentary sequences in the foreland basin to restraint uplift process and mechanism in the Longmen Mountain.The more than 10,000 m thick Late TriassicQuaternary strata filled in this foreland basin and can be divided into six megasequences that are distinguished as two distinct types.The first type is the wedge-shaped megasequences which are sedimentary response of strong active thrust loading events,characterized by a high rate of subsidence and sediment accumulation,coarsening-upward succession and a dual-sourced sediment supply.This type includes Late Triassic,Late Jurassic to Early Cretaceous and Late Cretaceous to Paleogene megasequences.The second type is the tabular megasequences,characterized by the low rate of subsidence and sediment accumulation,finingupward succession,and a single-sourced sediment supply,which is sedimentary response of isostatic rebound and erosion unloading.This type includes the Early to Middle Jurassic,Middle Cretaceous and Neogene to Quaternary megasequences.Basing on sedimentary,active tectonic,geomorphic evidence,we infer that the direction has been reversed from SSWdirected sinistral strike-slip to NNE-directed dextral strike-slip during 40-3.6 Ma,and since 3.6 Ma,the Longmen Mountain thrust belt belong to times of isostatic rebound and erosional unloading with NNEdirected dextral strike-slip.This suggests that crustal isostatic rebound is a primary driver for uplift and topography of the present Longmen Mountain.The Wenchuan(Ms8.0) earthquake,which ruptured a large thrust fault with NNE-directed dextral strikeslip along the range front,is an active manifestation of this crustal isostatic rebound process with dextral strike-slipping and shortening.This process may be the cause for the Wenchuan Earthquake and the apparent paradox of high relief,little shortening,the relative dearth of historical seismicity in the region.
出处 《Journal of Mountain Science》 SCIE CSCD 2013年第1期29-42,共14页 山地科学学报(英文)
基金 supported by the China National Natural Science Foundation (Grant No. 40841010,40972083,41172162) CGS Foundation (Grant No.1212011121268) Foundation from State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation (Grant No. SK-0801)
关键词 Wedge-shaped megasequence Tabular megasequence Orogenic loading Erosional unloading Uplift process Longmen Mountain Foreland basin 前陆盆地 沉积序列 隆升过程 龙门山 造山运动 走滑运动 情节 地壳均衡
  • 相关文献

参考文献5

二级参考文献65

  • 1赵小麟,邓起东,陈社发.龙门山逆断裂带中段的构造地貌学研究[J].地震地质,1994,16(4):422-428. 被引量:79
  • 2邓起东,陈社发,赵小麟.龙门山及其邻区的构造和地震活动及动力学[J].地震地质,1994,16(4):389-403. 被引量:434
  • 3李勇,曹叔尤,周荣军,AL DENSMORE,M A ELLIS.晚新生代岷江下蚀速率及其对青藏高原东缘山脉隆升机制和形成时限的定量约束[J].地质学报,2005,79(1):28-37. 被引量:72
  • 4[1]Avouac, J. P., and Tapponnier, P. 1993. Kinematic model of active deformation in central Asia. Geophysical Research Letters 20: 895~898
  • 5[2]Burchfiel, B. C., CHEN, Z., LIU, Y., and Royden, L.H..1995. Tectonics of the Longmen Shan and adjacent regions. International Geology Review 37: 661~735
  • 6[3]CHEN, S.F., Wilson, C. J. L., DENG, Q.D., ZHAO,X.L., and LUO, Z.L..1994. Active faulting and block movement associated with large earthquakes in the Min Shan and Longmen Mountains, Northeastern Tibetan plateau. Journal of Geophysical Research 99: 24025~24038
  • 7[4]CHEN, S. F., and Wilson, C.J.L. 1996. Emplacement of the Longmen Shan Thrust-Nappe Belt along the eastern margin of the Tibetan Plateau. Journal of Structural Geology 18: 413~430
  • 8[5]Clark,M.K., and Royden,L.H..2000. Topographic ooze: building the eastern margin of Tibet by lower crustal flow. Geology 28: 703~706
  • 9[6]Dirks, P. H. G. M., Wilson, C. J. L., CHEN, S., LUO, Z. L., and LIU, S. 1994. Tectonic evolution of the NE margin of the Tibetan Plateau: evidence from the central Longmen Mountains, Sichuan Province, China. Journal of Southeast Asian Earth Sciences 9: 181~192
  • 10[7]England, P.C., and Houseman, G.A. 1986. Finite strain calculations of continental deformation: 2, comparison with the India-Asia collision zone. Journal of Geophysical Research 91: 3664~3676

共引文献414

同被引文献42

引证文献3

二级引证文献7

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部