...
首页> 外文期刊>Tectonics >Miocene uplift of the NE Greenland margin linked to plate tectonics: Seismic evidence from the Greenland Fracture Zone, NE Atlantic
【24h】

Miocene uplift of the NE Greenland margin linked to plate tectonics: Seismic evidence from the Greenland Fracture Zone, NE Atlantic

机译:与板块构造相关的东北格陵兰边缘的中新世隆升:东北大西洋格陵兰断裂带的地震证据

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Tectonic models predict that following breakup, rift margins undergo only decaying thermal subsidence during their postrift evolution. However, postbreakup stratigraphy beneath the NE Atlantic shelves shows evidence of regional-scale unconformities, commonly cited as outer margin responses to inner margin episodic uplift, including the formation of coastal mountains. The origin of these events remains enigmatic. We present a seismic reflection study from the Greenland Fracture Zone-East Greenland Ridge (GFZ-EGR) and the NE Greenland shelf. We document a regional intra-Miocene seismic unconformity (IMU), which marks the termination of synrift deposition in the deep-sea basins and onset of (i) thermomechanical coupling across the GFZ, (ii) basin compression, and (iii) contourite deposition, north of the EGR. The onset of coupling across the GFZ is constrained by results of 2-D flexural backstripping. We explain the thermomechanical coupling and the deposition of contourites by the formation of a continuous plate boundary along the Mohns and Knipovich ridges, leading to an accelerated widening of the Fram Strait. We demonstrate that the IMU event is linked to onset of uplift and massive shelf progradation on the NE Greenland margin. Given an estimated middle to late Miocene (similar to 15-10Ma) age of the IMU, we speculate that the event is synchronous with uplift of the east and west Greenland margins. The correlation between margin uplift and plate motion changes further indicates that the uplift was triggered by plate tectonic forces, induced perhaps by a change in the Iceland plume (a hot pulse) and/or by changes in intraplate stresses related to global tectonics.
机译:构造模型预测,破裂后裂谷边缘在裂谷后的演化过程中只会经历热沉降的衰减。但是,东北大西洋大陆架下面的破裂后地层学表明,存在区域范围不整合的证据,通常被认为是对内边缘情景隆升的外边缘响应,包括沿海山脉的形成。这些事件的起源仍然是个谜。我们提出了格陵兰断裂带-东格陵兰脊(GFZ-EGR)和东北格陵兰陆架的地震反射研究。我们记录了区域中新世内部地震不整合面(IMU),这标志着深海盆地中的同相沉积物的终止和(i)跨GFZ的热力耦合作用,(ii)盆地压缩和(iii)异质岩沉积的开始,在EGR以北。二维挠曲反冲的结果限制了跨GFZ的耦合的开始。我们通过沿Mohns和Knipovich脊形成连续的板块边界来解释热机械耦合和轮廓线的沉积,从而导致Fram海峡加速加宽。我们证明,IMU事件与东北格陵兰边缘的隆升和大规模的陆架扩张有关。考虑到IMU的中新世中晚期(类似于15-10Ma)年龄,我们推测该事件与格陵兰东部和西部边缘的隆升同步。边缘隆起与板块运动变化之间的相关性进一步表明,隆起是由板块构造力触发的,可能是由冰岛羽流的变化(热脉动)和/或与全球构造有关的板内应力的变化引起的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号