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Imaging variations in the central Andean mantle and the subducting Nazca slab with teleseismic tomography.

机译:用远震层析成像技术对安第斯中部地幔和俯冲的纳斯卡板的变化进行成像。

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摘要

The Nazca-South America convergent margin is marked by the presence of the Andean mountain belt, which stretches along the 8000-km long western margin of the South American plate. The subduction zone is characterized by significant along-strike changes in both upper plate structure and slab geometry that make it an ideal region to study the relationship between the subducting slab, the surrounding mantle, and the overriding plate. This dissertation summarizes the results of three finite frequency teleseismic tomography studies of the central Nazca-South America subduction zone which improve our understanding of how along-strike variations in the Andean mountain belt and the subducting Nazca plate interact with each other and with the surrounding mantle. This is accomplished by first focusing on two smaller adjacent regions of the central Andes to explore upper mantle variations and then by using a combined dataset, which covers a larger region, to image the deeply subducted Nazca slab to investigate the fate of the slab. The first study focuses on the central Andean upper mantle under the Altiplano-Puna Plateau where normally dipping subduction of the Nazca plate is occurring (18° to 28°S). The shallow mantle under the Eastern Cordillera is generally fast, consistent with either underthrusting of the Brazilian cratonic lithosphere from the east or a localized "curtain" of delaminating material. Additional evidence for delamination is seen in the form of high amplitude low velocities under the Puna Plateau, consistent with proposed asthenospheric influx following lithospheric removal. In the second study, we explore the transition between normal and flat subduction along the north edge of the Altiplano Plateau (8° to 21°S). We find that the Peruvian flat slab extends further inland along the projection of the Nazca Ridge than was previously proposed and that when re-steepening of the slab occurs, the slab dips very steeply (∼70°) down through the mantle transition zone (MTZ). We also tentatively propose a ridge parallel tear along the north edge of the Nazca Ridge. Both of these observations imply that the presence of the Nazca Ridge is at least locally influencing the geometry of the flat slab. The final study investigates along-strike variations in the deeply subducted Nazca slab along much of the central Nazca-South America subduction zone (6° to 32°S). Our results confirm that the Nazca slab continues subducting into the lower mantle rather than remaining stagnant in the MTZ. Thickening of the slab in the MTZ north of 16°S is interpreted as folding or buckling of the slab in response to the decreased slab sinking velocities in the lower mantle.
机译:纳斯卡与南美的汇聚边缘以安第斯山脉带为标志,该山脉带沿南美板块长8000公里的西缘延伸。俯冲带的特征是上板结构和板块几何形状均发生明显的沿走向变化,这使其成为研究俯冲板块,周围地幔和上覆板之间关系的理想区域。本文总结了纳斯卡-南美中部俯冲带的三项有限频率远震层析成像研究的结果,这些研究提高了我们对安第斯山脉地带和俯冲纳斯卡板块沿走向变化如何相互影响以及与周围地幔相互作用的认识。 。要做到这一点,首先要关注安第斯山脉中部的两个较小相邻区域,以探索上地幔变化,然后使用覆盖较大区域的组合数据集对深俯冲的纳斯卡板进行成像,以研究板的命运。第一项研究集中在高原-普纳高原下的安第斯中部上地幔,那里通常发生纳斯卡板块的俯冲俯冲(18°至28°S)。东部山脉下方的浅地幔通常较快,这与巴西克拉通岩石圈从东部的逆冲作用或局部的分层“幕”相一致。在Puna高原下以高振幅低速度的形式出现了分层的其他证据,这与岩石圈去除后的软流圈涌入相一致。在第二项研究中,我们探索了高原高原北缘(8°至21°S)的正常俯冲与平坦俯冲之间的过渡。我们发现秘鲁扁平板沿纳斯卡脊的投影向内陆延伸得比以前提出的要宽,并且当平板重新变硬时,平板会通过地幔过渡带(MTZ)倾斜非常陡峭(〜70°)。 )。我们还临时提议沿着纳斯卡山脊的北缘形成一个平行的山脊。这两个观察结果都暗示,纳斯卡海岭的存在至少局部地影响了平板的几何形状。最终研究调查了纳斯卡—南美中部俯冲带大部分区域(6°至32°S)沿深俯冲的纳斯卡板块走向的变化。我们的结果证实,纳斯卡板块继续俯冲到下地幔中,而不是在MTZ中停滞不前。在16°S以北的MTZ中,平板的增厚被解释为平板的折叠或屈曲,这是由于下地幔中平板下沉速度的降低所致。

著录项

  • 作者

    Scire, Alissa.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Geophysics.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 204 p.
  • 总页数 204
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:52:22

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