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首页> 外文期刊>Geology >Recycling of depleted continental mantle by subduction and plumes at the Hikurangi Plateau large igneous province, southwestern Pacific Ocean
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Recycling of depleted continental mantle by subduction and plumes at the Hikurangi Plateau large igneous province, southwestern Pacific Ocean

机译:Hikurangi高原大石峰省,西南太平洋郊区的俯冲和羽毛回收耗尽欧式地幔

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摘要

Seismic reflection and refraction data from Hikurangi Plateau (southwestern Pacific Ocean) require a crustal thickness of 10 +/- 1 km, seismic velocity of 7.25 +/- 0.35 km/s at the base of the crust, and mantle velocity of 8.30 +/- 0.25 km/s just beneath the Moho. Published models of gravity data that assume normal crust and mantle density predict 5-10-km-thicker crust than we observe, suggesting that the mantle beneath Hikurangi Plateau has anomalously low density, which is inconsistent with previous suggestions of eclogite to explain observations of high seismic velocity. The combination of high seismic velocity and low density requires the mantle to be highly depleted and not serpentinized. We propose that Hikurangi Plateau formed by decompression melting of buoyant mantle that was removed from a craton root by subduction, held beneath 660 km by viscous coupling to slabs, and then rose as a plume from the lower mantle. Ancient Re-Os ages from mantle xenoliths in nearby South Island, New Zealand, support this hypothesis. Erosion of buoyant depleted mantle from craton roots by subduction and then recycling in plumes to make new lithosphere may be an important global geochemical process.
机译:HIKURANGI高原(西南太平洋)的地震反射和折射数据需要10 +/- 1公里的地壳厚度,地壳底部的地震速度为7.25 +/- 0.35 km / s,以及8.30 + /的地幔速度为8.30 + / - Moho下面0.25 km / s。发布的重力数据模型,假设正常地壳和地幔密度预测比我们观察到的5-10公里 - 厚的地壳,表明Hikurangi高原下面的地幔具有异常低密度,这与先前对eNlogite的建议不一致,以解释高度的eClogite的建议地震速度。高地震速度和低密度的组合需要搭腔高度耗尽而不是蛇形化。我们建议通过俯冲从Craton根除的浮标熔化的浮力碎片的减压熔化形成的Hikurangi高原,通过粘性耦合到板坯,然后从下部地幔上升起。来自新西兰南岛南岛的Mantle Xenoliths的古代Re-Os岁,支持这一假设。通过俯冲从CRATON ROOTO脱落的浮力耗尽的地幔,然后在羽毛中回收利用新的岩石圈可能是一个重要的全球地球化学过程。

著录项

  • 来源
    《Geology》 |2019年第8期|共4页
  • 作者单位

    Univ Tokyo ERI Tokyo 1130032 Japan;

    SGEES Victoria Univ Wellington POB 600 Wellington 6140 New Zealand;

    GNS Sci POB 30368 Lower Hutt 5040 New Zealand;

    GNS Sci POB 30368 Lower Hutt 5040 New Zealand;

    Univ Texas Austin Inst Geophys Austin TX 78758 USA;

    Japan Agcy Marine Earth Sci &

    Technol JAMSTEC Yokohama Kanagawa 2360001 Japan;

    Japan Agcy Marine Earth Sci &

    Technol JAMSTEC Yokohama Kanagawa 2360001 Japan;

    Japan Agcy Marine Earth Sci &

    Technol JAMSTEC Yokohama Kanagawa 2360001 Japan;

    Japan Agcy Marine Earth Sci &

    Technol JAMSTEC Yokohama Kanagawa 2360001 Japan;

    Univ Texas Austin Inst Geophys Austin TX 78758 USA;

    GNS Sci POB 30368 Lower Hutt 5040 New Zealand;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;
  • 关键词

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