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A unique ~12 ka subaerial record of rift-transform triple-junction tectonics NE Iceland

机译:冰岛东北部裂谷变三结构造的独特的〜12 ka空中记录

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摘要

In northern Iceland the European-North American plate boundary is broad and complex but includes a remarkable subaerial triple-junction intersection between the Husavik-Flatey Fault (HFF) dextral transform and rifting in the Northern Volcanic Zone. Fortuitously, the triple junction occurs in a sheet of ~12 ka pahoehoe lavas; a tabula rasa recording innumerable fault features displayed in exquisite detail. High-resolution drone imagery, coupled with 120 field measurements of fault slip directions and opening amounts, made possible the mapping and analysis of this detail and, importantly, enabled recognition and exclusion of potentially misleading primary deformation features associated with emplacement of the lavas. Rift-transform interactions in this natural laboratory have remained spatially stable throughout post-glacial time, although with transform-affinity faults reactivated to accommodate rift extension and transform ‘encroachment’ into the rift domain. First-order en-echelon Riedel fault complexes are recognised, linked by transpressional faulting and compressional strike-slip relay ramps, as well as second-order R shears, R’ and P shears, and previously undescribed R’ Riedel-in-Riedel relationships. A pahoehoe flow front offset along a first-order Riedel fault complex records slip at ~3.8 mm a−1, which may be consistent with the published GPS-based current slip-rate estimate of ~6.8 mm a−1 across the HFF as a whole.
机译:在冰岛北部,欧洲-北美板块边界宽阔而复杂,但是在北部火山区的Husavik-Flatey断层(HFF)右旋变换与裂谷之间包括一个明显的空中三结交点。幸运的是,三重结发生在约12 ka的pahoehoe熔岩层中。表格详细记录了无数故障特征。高分辨率的无人机图像,加上对断层滑动方向和张开量的120个现场测量值,使得对该细节的映射和分析成为可能,并且重要的是,能够识别和排除与熔岩安置有关的潜在误导性主要变形特征。尽管重新激活了转换亲和力断层以适应裂谷的扩展并将“侵占”转化为裂谷域,但在自然期后的冰川中,裂谷-转换相互作用在空间上一直保持稳定。一阶梯级里德尔断层复合体被识别,由压断层和压缩走滑中继斜坡,二阶R剪切,R'和P剪切以及先前未描述的R'Riedel-in-Riedel关系链接。沿一阶Riedel断层复杂记录的Pahoehoe流前偏移在〜3.8 mm a -1 处滑动,这可能与已发布的基于GPS的当前滑移率估计值〜6.8 mm a一致整个HFF中 -1

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