古地理学报 ›› 2012, Vol. 14 ›› Issue (3): 403-410. doi: 10.7605/gdlxb.2012.03.014

• 新技术与新方法 • 上一篇    

四川广元上寺剖面晚二叠世—早三叠世旋回地层:基于小波分析的P-T界线地质事件探讨*

乔彦国1 时志强1 王艳艳2 张彪1   

  1. 1 成都理工大学沉积地质研究院,四川成都 610059
    2 成都理工大学材料与化学化工学院,四川成都 610059
  • 收稿日期:2011-06-10 修回日期:2011-08-20 出版日期:2012-06-01 发布日期:2012-06-01
  • 通讯作者: 通讯作者简介 时志强,男,1972年生,成都理工大学教授,沉积学专业 E-mail:myloverspringli@163.com
  • 作者简介:乔彦国,男,1982年生,成都理工大学硕士研究生,沉积学专业。E-mail: myloverspringli@163.com。
    通讯作者简介 时志强,男,1972年生,成都理工大学教授,沉积学专业。E-mail:szqcdut@163.com。
  • 基金资助:
    国家自然科学基金项目(编号:40872082)资助

The Late Permian-Early Triassic cyclostratigraphy in Shangsi section of Guangyuan area,Sichuan Province: Implications for P-T geological event based on wavelet analysis

Qiao Yanguo1, Shi Zhiqiang1, Wang Yanyan2, Zhang Biao1   

  1. 1 Institute of Sedimentary Geology,Chengdu University of Technology,Chengdu 610059,Sichuan
    2 College of Materials and Chemistry & Chemical Engineering,Chengdu University of Technology,Chengdu 610059,Sichuan
  • Received:2011-06-10 Revised:2011-08-20 Online:2012-06-01 Published:2012-06-01
  • About author:Qiao Yanguo, born in 1982, is a postgraduate at Chengdu University of Technology,and is engaged in sedimentary geology. E-mail: myloverspringli@163.com.
    About the corresponding author Shi Zhiqiang, born in 1972, is a professor at Chengdu University of Technology,and is engaged in sedimentary geology. E-mail: szqcdut@163.com.

摘要: 利用小波分析技术,对采集自四川广元上寺剖面上二叠统—下三叠统格里斯巴赫亚阶以碳酸盐岩为主的沉积序列的自然伽马(GR)能谱序列进行深入分析研究,结果表明,该沉积序列很大程度上受到410:102.5:42.6:21.5的米兰科维奇旋回控制。晚二叠世上寺剖面位于古特提斯洋的深水环境,沉积速率较低,平均为5 cm/ka;二叠纪—三叠纪过渡时期研究区构造活动强烈,陆地及海洋生物发生大灭绝,由于酸雨以及植被缺乏等气候及生态因素影响,陆地表面风化速率急剧增加,大量陆源物质注入导致早三叠世早期浅海系统沉积速率提高至25 cm/ka,并强烈影响了海洋生态系统,抑制了海洋生物的多样性,延缓了海洋生态复苏进程。在二叠纪末期,上寺剖面沉积记录的旋回性较为明显且稳定,到三叠纪早期旋回性有所变差。早三叠世沉积速率的显著变化和旋回性差异与该时期动荡的古气候、古海洋环境密切相关,地球表层环境变化对海洋生态系统具有较强的影响,且可能成为早三叠世海洋生态系统复苏缓慢的主要控制因素之一。

关键词: P-T界线, 生物大灭绝, 米兰科维奇旋回, 沉积速率, 小波分析, 上寺剖面

Abstract: Based on the analysis of the GR energy spectrum collected from the Upper Permian to Lower Triassic carbonate rocks in Shangsi section at Guangyuan area,Sichuan Province,it was indicated that the sedimentary layers are controlled by Milankovitch cycles,whose scale ratio was 410:102.5:42.6:21.5.During the Late Permian,the Shangsi area was in a deep-water environment of the paleo-Tethys and the deposition rate was low to 5 cm/ka.During the P-T transitional period the tectonic movement was strong and terrestrial and marine fauna experienced mass extinction.At the same time,weathering rate increased sharply because of the acid rain and lack of terrestrial vegetation and mass terrigenous material fluxed into shallow sea in turn,which resulted in a rapid deposition rate of 25cm/ka in Shangsi section.The rapid rate of deposition displayed a strong influence on marine ecosystems,that is,it restrained the diversity of marine fauna and delayed the resuscitating of marine ecosystems.The cyclicity of the latest Permian sedimentary record was more obvious and stable in Shangsi section.However,the periodicity turned to be labile when it came to the Early Triassic.We concluded that the accelerated deposition rate and deteriorated sedimentary cyclicity were triggered by the turbulent paleoclimate and mussy marine environment.The perturbation of the terrestrial realm contributed to the change of marine conditions,which might be one of the major reasons for the marine ecosystem recovering relatively slowly in the Early Triassic.

Key words: P-T boundary, mass extinction, Milankovitch cycle, deposition rate, wavelet analysis, Shangsi section

中图分类号: