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Mechanics of fore-arc slivers: Insights from simple analog models

机译:前弧条的力学:来自简单模拟模型的见解

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摘要

Convergent margins with oblique subduction commonly include a fore-arc sliver, a portion of the overlying plate bounded by the trench and a major strike-slip fault system. It has long been noted that relative plate motion near the deformation front, as indicated by earthquake focal mechanisms, is generally closer to margin-normal than would be expected from overall relative plate motion. This results from sliver motion as well as from shear within the fore arc. We carry out some simple calculations to determine how the rate of sliver motion should vary with plate convergence obliquity. We find that the results are related to rheology but that the measurement of sliver rates at natural fore arcs is unlikely to yield real insight into physical properties; even for very simple models; the system is too complicated and its relation to rheology is not unique. The proportion of oblique convergence taken up by sliver motion in simple tabletop experiments depends on the rate of slip and the smoothing of asperities. Similarities in taper and style of strain between frontal wedges forming with and without slivers suggest that structural observations of exhumed accretionary wedges are unlikely to allow geologists to draw definitive conclusions about the degree of obliquity of relative plate motion at the time when the wedges were formed and in some cases not even whether or not a sliver plate was present at the time of deformation.
机译:斜向俯冲的会聚边缘通常包括一个前弧条,一部分被沟槽界定的上覆板和一个主要的走滑断层系统。长期以来,人们一直注意到,地震震源机制表明,靠近变形前沿的相对板块运动通常比整体相对板块运动所预期的更接近于边缘法线。这是由条子运动以及前弧内的剪切引起的。我们进行一些简单的计算,以确定板条运动的速率应如何随着板汇聚的倾斜而变化。我们发现结果与流变学有关,但是在自然弧度下对条子速率的测量不太可能对物理性质产生真正的了解。即使是非常简单的模型该系统太复杂,与流变学的关系也不是唯一的。在简单的桌面实验中,条子运动所占据的倾斜会聚比例取决于滑移率和凹凸不平度。带有和不带有碎片的额叶楔形之间的锥度和应变方式的相似性表明,掘出的增生楔形的结构性观察不太可能使地质学家得出有关楔形形成时相对板块运动倾斜度的明确结论。在某些情况下,甚至在变形时也没有裂片。

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  • 来源
    《Tectonics 》 |2010年第5期| p.TC5015.1-TC5015.14| 共14页
  • 作者

    Saad S. B. Haq; Dan M. Davis;

  • 作者单位

    Department of Earth and Atmospheric Sciences, Purdue University, West Lafayette, Indiana, USA;

    Department of Geosciences, Stony Brook University, Stony Brook, New York, USA;

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  • 正文语种 eng
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