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Throw-rate variations within linkage zones during the growth of normal faults: Case studies from the Western Volcanic Zone, Iceland

机译:正断层生长过程中连接带内的投掷速率变化:来自冰岛西部火山带的案例研究

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摘要

This work investigates how throw-rates vary within fault bends and sites of fault linkage during the process of normal fault growth. In the Western Volcanic Zone, Iceland, through detailed field mapping and field measurements of fault throws, normal faults are mapped and along-strike throw profiles are constructed in order to understand how the throw-rates relate with the local fault geometry along faults at different stages of linkage. The results show that throw-rates increase within linkage zones and propagating fault bends independently from the stage of maturity of the fault bend. This implies that 1) the relationship between the local fault geometry and the along-strike distribution of throw-rate is driven by the deeper part of the fault, where established fault bends start propagating to the surface; 2) faults grow first by linkage and coalescence of separate faults, and then by accumulation of slip on the resultant fault, in agreement with models of fault growth by linkage and coalescence; 3) incipient fault bends can produce uncertainty associated with palaeoseismological results, if fault bends remain unrecognised. Moreover, this work demonstrates that existing models showing increased co-seismic and throw-rates within fault bends and sites of fault linkage found in continental extensional settings are valid in a geodynamic context of a mid-oceanic rifts.
机译:这项工作研究了在正常断层生长过程中,断层弯曲处和断层链接处的投掷率如何变化。在冰岛西部火山区,通过详细的野外测绘和断层投掷的野外测量,绘制了正常断层并绘制了沿走向的断层剖面,以了解不同区域断层的投掷率与局部断层几何形状之间的关系。链接阶段。结果表明,与断层弯曲的成熟阶段无关,在连接带内和断层弯曲蔓延中,抛掷速率增加。这意味着:1)局部断层几何形状与沿走向的走向分布之间的关系是由断层的较深部分驱动的,断层的较深部分开始形成断层弯曲,并开始向地面传播。 2)断层首先通过分开的断层的链接和合并而增长,然后通过在生成的断层上滑动而积累,这与通过链接和合并的断层增长模型相一致; 3)如果断层弯仍未被发现,初期断层弯会产生与古地震学结果相关的不确定性。此外,这项工作表明,现有的模型显示出在大陆伸展背景下发现的断层弯曲和断层链接点内同震和投掷速率增加,在中海裂谷的地球动力学背景下是有效的。

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  • 来源
    《Journal of structural geology》 |2020年第4期|103976.1-103976.17|共17页
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  • 作者单位

    Birkbeck Univ London Dept Earth & Planetary Sci Malet St London WC1E 7HX England;

    UCL Inst Risk & Disaster Reduct Gower St London WC1E 6BT England;

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