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Tomographic Pn Velocity and Anisotropy Structure in Mongolia and the Adjacent Regions

机译:蒙古和邻近地区的断层术PN速度和各向异性结构

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摘要

We present new high-resolution Pn velocity and anisotropy models beneath Mongolia and the adjacent regions by inverting 169,406 Pn arrivals. The data are selected from 786 permanent stations and 106 portable seismographs recently deployed in Mongolia and China's Inner Mongolia. The availability of new data acquired has allowed us to explore the uppermost mantle structures in great detail in this region, and the 2 degrees x2 degrees model resolution is capable of distinguishing small-scale geological features. Pn average velocity is 8.18km/s, substantially faster than the global average. Distinct contrast in the velocity of the uppermost mantle is observed between the central part and two ends of the Baikal Rift, with the presence of higher velocities under the Central Baikal Rift, indicating strong variation of lithospheric thinning across the entire Baikal Rift. Low velocity beneath the Hangay Dome implies partial melting of mantle reflected by asthenospheric upwelling. Azimuthal anisotropy in the upper and lower mantle lid is measured by grouping the travel time data into two phases by epicenter distance. The obvious depth dependence of Pn anisotropy beneath the Hentey Mountains suggests different origins of fabrics. The lower anisotropy may origin from asthenospheric flow, while the shallower fabric may exhibit the preserved lattice preferred orientation anisotropy in the uppermost mantle. Meanwhile, depth-dependent anisotropic structures and significantly low velocity are found beneath Tien Shan, most possibly suggesting that the lithospheric mantle thinning is experienced by either delamination or local asthenospheric upwelling.
机译:我们通过反转169,406 PN抵达,在蒙古和相邻地区下面提出新的高分辨率PN速度和各向异性模型。这些数据选自最近在蒙古和中国内蒙古部署的786个永久站和106个便携式地震仪。获取的新数据的可用性使我们能够在该区域非常详细地探索最上面的地幔结构,并且2度X2度模型分辨率能够区分小规模的地质特征。 PN平均速度为8.18km / s,比全球平均水平更快。在百吉河裂谷的中央部分和两端之间观察到最上面的披风的速度的明显对比度,在中央鲈鱼裂痕下存在较高的速度,表明整个百吉氏裂缝裂痕的岩石稀土的强变化。汉络圆顶下方的低速意味着由哮喘的升值反映的地幔的部分熔化。通过震中距离将行程时间数据分组成两个阶段来测量上部和下部披风盖中的方位角各向异性。在壁龛中,Pn各向异性的明显深度依赖性建议不同的织物起源。较低的各向异性可能来自哮喘流动,而浅织物可以在最上面的地幔中表现出保存的晶格优选取向各向异性。同时,沉山下面发现了深度依赖的各向异性结构和显着低的速度,最有可能表明通过分层或局部哮喘的升值而经历了岩石树状地幔细化。

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  • 作者单位

    China Earthquake Adm Inst Crustal Dynam Key Lab Crustal Dynam Beijing Peoples R China;

    China Earthquake Adm Inst Geophys Key Lab Seism Observat &

    Geophys Imaging Beijing Peoples R China;

    Univ Missouri Dept Geol Sci Columbia MO USA;

    China Earthquake Adm Inst Geophys Key Lab Seism Observat &

    Geophys Imaging Beijing Peoples R China;

    China Earthquake Adm Inst Geophys Key Lab Seism Observat &

    Geophys Imaging Beijing Peoples R China;

    China Earthquake Adm Inst Geophys Key Lab Seism Observat &

    Geophys Imaging Beijing Peoples R China;

    China Earthquake Adm Monitoring &

    Applicat Ctr 1 Tianjin Peoples R China;

    China Earthquake Adm Inst Geophys Key Lab Seism Observat &

    Geophys Imaging Beijing Peoples R China;

    China Earthquake Adm Inst Crustal Dynam Key Lab Crustal Dynam Beijing Peoples R China;

    China Univ Petr East China Sch Geosci Qingdao Shandong Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

    Pn velocity; Pn azimuthal anisotropy; Mongolia; Baikal Rift; Tien Shan orogenic belt;

    机译:pn速度;pn方位角各向异性;蒙古;贝加尔裂痕;天山造山带;

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