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Influence of rheology on realignment of mantle convective structure with plate motion after a plate reorganization.

机译:板重组后流变学对板流对流对流结构重新排列的影响。

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摘要

Small-scale convection (SSC) rolls below the oceanic lithosphere have the tendency to align with the large-scale shearing direction and thus with the plate motion direction relative to the deep mantle. Understanding the timescales of and processes responsible for realignment would contribute significantly to our understanding of the unresolved phenomena in the Pacific such as gravity lineations, small-scale seismic velocity variations, and intraplate volcanism that cannot be explained by hot spots. In this study we examine the evolution of those convection rolls when this relative plate motion direction is suddenly changed, as suggested by the kink in the Hawaii-Emperor seamount chain. Using three-dimensional numerical flow models, we investigate the realignment of SSC rolls after a change in plate motion direction. From the nature of the SSC, it is expected that rheological parameters dominate the characteristics of this realignment. Our results show that this is indeed the case. We find that (1) using constraints from onset timing of SSC, realignment of rolls can occur as fast as within 20 Ma, but might also take much longer, dependent on the rheology; (2) the realignment period is strongly correlated to the sum of large-scale shear stress induced by plate motion and small-scale shear stress from the SSC itself; (3) in a mantle deforming by dislocation creep, realignment occurs faster than by diffusion creep, because dislocation creep SSC is more vigorous; and (4) activation energy has little influence on the realignment time. Possible evidence for the realignment period might come from precise age determination of intraplate volcanism or azimuthal seismic anisotropy.
机译:海洋岩石圈以下的小尺度对流(SSC)趋势倾向于与大尺度剪切方向对齐,并因此与相对于深地幔的板块运动方向对齐。了解重新调整的时间尺度和过程将对我们对太平洋尚未解决的现象(例如重力线,小尺度地震速度变化和无法用热点解释的板内火山作用)的理解有很大帮助。在这项研究中,我们研究了当相对板块运动方向突然改变时,这些对流辊的演化,这是由夏威夷-皇帝海山链的扭结所暗示的。使用三维数值流模型,我们研究了板运动方向变化后SSC轧辊的重新排列。从SSC的性质来看,预计流变学参数将主导这种重新排列的特征。我们的结果表明确实如此。我们发现(1)使用来自SSC起始时间的约束,轧辊重新排列的速度最快可达到20 Ma,但取决于流变学,它可能还需要更长的时间; (2)对准周期与板运动引起的大剪应力与SSC自身的小剪应力之和密切相关; (3)在位错蠕变引起的地幔变形中,由于位错蠕变SSC更加剧烈,因此重新排列的速度比扩散蠕变快。 (4)活化能对重排时间影响很小。重新对准期的可能证据可能来自于板内火山作用或方位角地震各向异性的精确年龄确定。

著录项

  • 作者

    Hunen van J.; Zhong S.;

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  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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