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New constraints on the seismic structure of West Australia: Evidence for terrane stabilization prior to the assembly of an ancient continent?

机译:西澳大利亚州地震结构的新限制:古代大陆组装之前的地层稳定证据?

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We present a new, near-comprehensive survey of the variations in seismic structure across the West Australian craton at the scale of the main terrane groups. Analyzing data from distant earthquakes recorded at temporary and permanent stations located across the region, we found the best-fitting structure by modeling the conversions from P- to S-wave motion (the receiver function) that take place as the seismic energy travels upward through the lithosphere. Such methods can be used to delineate the extent of cratonic and orogenic terranes in regions where geological exposure of the surface is limited, and they provide an effective alternative to active-source seismic techniques for deep crustal targets. The seismic structure is consistent within several of the individual Archean terranes, most notably the Pilbara, Murchison, and Southern Cross. These terranes are underlain by lower crust of low seismic velocity and show a sharp seismic Moho. The structure shows significant contrasts between neighboring terranes; thus, major tectonic units have a velocity profile that is a signature of that terrane or terrane group. We infer that the seismic structure of the Archean crust and upper mantle was fixed before craton assembly and preserved through the subsequent collision and accretion of the tectonic units that formed the West Australian craton.
机译:我们提出了一个新的,近乎全面的调查,即在主要地层组的 规模上,整个西澳大利亚克拉通的地震结构的变化 。通过分析在整个区域内位于 的临时和永久站点的遥远 地震的数据,我们通过对 的转换进行建模,找到了最合适的结构-地震能量向上穿过岩石圈向上传播时发生的S波运动(接收器功能) 。此类方法可用于描述表面地质暴露受限的地区克拉通和造山带的范围 ,并且它们提供有效的 适用于深地壳 目标的有源地震技术的替代方法。地震结构在单个太古宙地的几个 中是一致的,最著名的是Pilbara, Murchison和Southern Cross。这些地层被低地震速下地壳覆盖在 之下,并显示出强烈的地震 Moho。结构显示了相邻 地形之间的明显对比;因此,主要构造单元的速度剖面 是该地形或地形组的标志。我们推断 太古宙地壳和上地幔的地震结构在克拉通组建之前是固定的,并通过随后的 碰撞和构造增生得以保留。形成 西澳大利亚克拉通的单位。

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  • 来源
    《Geology 》 |2007年第4期| 379-382| 共4页
  • 作者单位

    Research School of Earth Sciences, Australian National University, Canberra, ACT 0200, Australia;

    Research School of Earth Sciences, Australian National University, Canberra, ACT 0200, Australia;

    Geoscience Australia, GPO Box 378, Canberra, ACT 2601, Australia;

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