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Crustal accretion and evolution at slow and ultra-slow spreading mid-ocean ridges

机译:在海洋中脊缓慢和超慢速蔓延的地壳增生和演化

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摘要

Half of the ocean crust is formed at spreading centers with total opening rates less than 40 km/Myr. The objective of this Thesis is to investigate temporal variations in active ridge processes and crustal aging at slow-spreading centers by comparing axial crustal structure with that on conjugate flanks of the slow-spreading Mid-Atlantic Ridge (MAR) (full rate, 20 km/Myr) and the ultra-slow spreading Southwest Indian Ridge (SWIR) (full rate, 14 km/Myr). Seismic refraction data collected along the rift valley and flanking rift mountains of the OH-1 segment (35ʻN) at the MAR show that the entire crustal section is constructed within a zone that is less than 5 km wide. Shallow-level hydrothermal circulation within the axial valley is suggested by the rift mountain seismic profiles, which show that the upper crust is 20% thinner and 16% faster along strike than zero-age crust. These effects probably result from fissure sealing within the extrusive crust. Deeper crustal velocities remain relatively constant at the segment midpoint within the first 2 Myr, but are reduced near the segment offsets presumably by faulting and fracturing associated with uplift out of the rift valley.
机译:一半的洋壳形成在扩散中心,总开度低于40 km / Myr。本文的目的是通过将轴向地壳结构与慢速扩展中大西洋海脊(MAR)的共轭侧翼的轴向地壳结构进行比较(全速20 km,研究活动性脊过程和地壳老化的时间变化) / Myr)和超慢蔓延的西南印第安岭(SWIR)(全速,14 km / Myr)。在MAR沿OH-1段(35'N)的裂谷和侧裂山收集的地震折射数据表明,整个地壳剖面构造在一个小于5 km的区域内。裂谷山地震剖面表明轴向谷内的浅层热液循环表明,上地壳沿走向的厚度比零年龄地壳薄20%,沿走向的速度快16%。这些影响可能是由于挤压壳内部的裂缝密封造成的。在最初的2 Myr内,较深的地壳速度在分段中点处保持相对恒定,但在分段偏移附近可能会由于断层和与隆起谷脱离而引起的破裂而减小。

著录项

  • 作者

    Hosford Allegra;

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  • 年度 2001
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  • 原文格式 PDF
  • 正文语种 eng
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