期刊文献+

青藏高原东部壳幔速度结构和地幔变形场的研究 被引量:36

Study of crustal and upper mantle's structure and mantle deformation field beneath the eastern Tibetan plateau
下载PDF
导出
摘要 在青藏高原东部地球动力学问题中,笔者在文中主要考虑与地壳上地幔速度结构和地幔变形场有关的问题,它涉及当前流行的下地壳流动模型和壳-幔的耦合-解耦模型。在2000年完成的穿过川西高原和四川盆地的深地震测深剖面,揭示了川西高原的地壳结构具有地壳增厚(主要是下地壳增厚)、地壳平均速度低等特点,显示地壳的缩短与增厚的碰撞变形特征。根据川西高原上设置各爆炸点的记录截面图共同呈现PmP(莫霍界面反射波)弱能量的特点,推断在川西高原的下地壳介质具有强衰减(Qp=100~300)的性质,支持存在下地壳流动的模型。青藏高原东部和川滇西部地区的上地幔各向异性(SKS波快波偏振方向和快慢波延迟时间)的初步结果表明,这两个地区的壳-幔变形特征是不同的,尽管它们在地理位置上属于同一个板块碰撞带。在青藏高原内部的壳幔变形属于垂直连贯变形,它以缩短为主,而高原外部的地壳(或岩石圈)则相对于其下方地幔运动。在高原内部和外部之间存在一个重要的地幔变形过渡带。然而,高原内部的垂直连贯变形与高原内部存在大范围下地壳流动的模型不一致。笔者在该地区开展了近两年的宽频带流动地震观测,试图从地震记录中确定过渡带的位置和探讨它的流变性质。文中扼要回顾已经取得的结果,并介绍正在进行的研究。 This paper focuses on the crustal and upper mantle structure of the eastern Tibetan plateau, and the mantle deformation related to contrasting lower crustal flow and crust-mantle coupling decoupling models. Deep seismic profiling conducted in 2000, across the western Sichuan plateau and the Sichuan basin reveals that the western Sichuan plateau has a thickened crust (mainly in the lower crust) and a lower average crustal velocity; its collisional deformation is characterized by both crustal shortening and thickening. Based on the weak energy of seismic phase PmP (reflection from the Moho) on most record sections in the western Sichuan plateau, we infer a crustal model with high attenuation (Q = 100-300) in the lower crust, which could be indicative of lower crustal flow. The preliminary measurements of teleseismic shear wave splitting parameter, the fast polarization direction and time delay, indicate that crust-mantle deformation beneath the eastern Tibetan plateau is different from that beneath the western Yunnan and Sichuan region, although both are located in the Indian Eurasian plate collisional zone. The on-plateau crust-mantle deformation is a vertically coherent deformation, which is dominated by shortening. In contrast, the off-plateau crust (or lithosphere) is in motion with respect to underlying mantle. There is, thus, a fundamental transition in mantle deformation between on-plateau and off-plateau regions. Significantly, the on-plateau vertically coherent deformation is inconsistent with proposed models of large-scale, lower crustal flow within the Tibetan plateau. For this reason, we have con ducted a two-year project of mobile broadband seismic observations in the eastern Tibet and western Sichuan region to determine the location of a transition zone between them and to explore its rheological behavior from the seismic records. This paper briefly reviews the results obtained already in this region, and describes the studies in process.
出处 《地学前缘》 EI CAS CSCD 北大核心 2006年第5期349-359,共11页 Earth Science Frontiers
基金 国家自然科学基金资助项目(40334041) 科学技术部重点国际合作项目(2003DF000011)
关键词 地壳上地幔结构 地幔流动场 板块碰撞带 下地壳流动 简单软流圈流动 crustal and upper mantle's velocity structure mantle deformation field plate collisional zone lower crustal flow simple asthenospheric flow
  • 相关文献

参考文献58

  • 1TAPPONNIER P G, PELTZER A Y, DAIN L E, et al.Propagating extrusion tectonics in Asia: new insight from simple experiments with plasticine [J]. Geology, 1982, 10 :611-616. 被引量:1
  • 2ENGLAND P C, HOUSEMAN G A. Finite strain calculation of continental deformation, 2. Comparison with the Indi-a-Asia collision zone [J]. J Geophys Res, 1986, 91: 3664-3676. 被引量:1
  • 3MOLNAR P, CHEN W P. Evidence for large Cenozoic crustal shortening of Asia [J]. Nature, 1978, 273: 218-220. 被引量:1
  • 4CHEN W P, MOLNAR P. Constraints on the seismic wave velocity structure beneath the Tibetan plateau and their tectonic implication [J]. J Geophys Res, 1981, 86: 5837-5963. 被引量:1
  • 5BARAZANGI M, NI J. Velocities and propagation characteristics of Pn and Sn beneath the Himalayan arc and Tibetan plateau: possible evidence for underthrusting of Indian continental lithosphere beneath Tibet [J]. Geology, 1982, 10:179-185. 被引量:1
  • 6腾吉文 熊绍柏 严周勋 等.喜马拉雅北部地区的地壳结构模型和速度分布特征[J].地球物理学报,1983,26(6):525-540. 被引量:3
  • 7HIRN A, LEPINE J C, JOBERT G. Crustal structure and variability for the Himalayan border of Tibet [J]. Nature,1984, 307: 23-25. 被引量:1
  • 8NI J, BARAZANGI M. Seismotectonics of the Himalayan collision zone: geometry of the underthrusting Indian plate beneath the Himalaya [J]. J Geophys Res, 1984, 89: 1147-1163. 被引量:1
  • 9曾融生,朱介寿,周兵,丁志峰,何正勤,朱露培,骆循,孙为国.青藏高原及其东部邻区的三维地震波速度结构与大陆碰撞模型[J].地震学报,1992,14(S1):523-533. 被引量:51
  • 10ZHAO W J, NELSON K D, Project INDEPTH Team. Deep seismic reflection evidence for continental underthrusting beneath southern Tibet [J]. Nature, 1993, 366: 557-559. 被引量:1

二级参考文献74

共引文献572

同被引文献876

引证文献36

二级引证文献677

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