...
【24h】

SH wave structure of the crust and upper mantle in southeastern margin of the Tibetan Plateau from teleseismic Love wave tomography

机译:Tibetan高原东南部地壳和上部地幔的Sh波浪结构从Telesmicic Love波断层扫描

获取原文
获取原文并翻译 | 示例
           

摘要

The deep structure of southeastern Tibet is important for determining lateral plateau expansion mechanisms, such as movement of rigid crustal blocks along large strike-slip faults, continuous deformation or the eastward crustal channel flow. We invert for 3-D isotropic SH wave velocity model of the crust and upper mantle to the depth of 110 km from Love wave phase velocity data using a best fitting average model as the starting model. The 3-D SH velocity model presented here is the first SH wave velocity structure in the study area. In the model, the Tibetan Plateau is characterized by prominent slow SH wave velocity with channel-like geometry along strike-slip faults in the upper crust and as broad zones in the lower crust, indicating block-like and distributed deformation at different depth. Positive radial anisotropy (V-SH V-SV) is suggested by a high SH wave and low SV wave anomaly at the depths of 70-110 km beneath the northern Indochina block. This positive radial anisotropy could result from the horizontal alignment of anisotropic minerals caused by lithospheric extensional deformation due to the slab rollback of the Australian plate beneath the Sumatra trench.
机译:西藏东南部的深度结构对于确定横向平台膨胀机制很重要,例如沿着大型防滑故障,连续变形或东方地壳通道流动的刚性地壳块的移动。我们使用最佳拟合平均模型作为起始模型,将地壳和上部地幔的3d各向同性Sh波速模型与Love Wave Wave Velocity数据逆向110公里的深度。这里呈现的3-D SH速度模型是研究区域的第一个SH波速度结构。在该模型中,藏高平台的特点是突出的慢速SH波速度,沿着沿着沿着地壳中的滑动故障的频道状几何形状,并且在下面地壳中的宽大区域,表示在不同深度处的块状和分布式变形。正径向各向异性(V-SH&G-SV)由北印度靛蓝块下方70-110km的深度的高SH波和低SV波异常提出。由于苏门答腊沟槽下方的澳大利亚钢板的板块回滚,这种正径向各向异性可能是由岩石界延伸变形引起的各向异性矿物质的水平对准。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号