首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >A new model for the Paleogene motion of Greenland relative to North America: Plate reconstructions of the Davis Strait and Nares Strait regions between Canada and Greenland
【24h】

A new model for the Paleogene motion of Greenland relative to North America: Plate reconstructions of the Davis Strait and Nares Strait regions between Canada and Greenland

机译:格陵兰相对于北美的古近纪运动的新模型:加拿大和格陵兰之间的戴维斯海峡和纳雷斯海峡地区的板块重建

获取原文
获取原文并翻译 | 示例
       

摘要

A simplified plate kinematic model for the Paleogene motion of Greenland relative to North America has been developed to provide a new framework for modeling the oceanic spreading system in Baffin Bay and the intraplate tectonic development of the Davis Strait and Nares Strait regions of the Arctic. A single Euler rotation pole was calculated for the C13N to C24N Eocene motion of the Greenland Plate relative to North America using spreading centers and fracture zones interpreted from satellite derived gravity data in Baffin Bay combined with fracture zones in Labrador Sea from published sources. A single stage pole is proposed for the C25N to C27N portion of the Paleocene and a short-lived stage pole was found necessary to accommodate the C24N to C25N interval. This kinematic model has been used to reinterpret published shipborne magnetic profiles in central Baffin Bay to reveal a Paleocene spreading center and limits of both Eocene and Paleocene oceanic crust. Aeromagnetic data over northeastern Baffin Bay have been used to identify a new fracture zone in northern Baffin Bay. Plate reconstructions are presented incorporating constraints on plate boundaries from onshore and offshore geological and geophysical mapping. Within the Davis Strait, Paleocene oceanic crust was emplaced in an elongated rift that was subsequently inverted by approximately 300km of Eocene transpression along the Ungava Fault Zone. In the Nares Strait Region, a "microplate" scenario is presented to explain the simultaneous formation of the Lancaster Sound Rift Basin and complex deformation within the Eurekan Orogenic Belt.
机译:已经开发了格陵兰相对于北美的古近纪运动的简化板块运动学模型,为模拟巴芬湾的海洋扩展系统以及北极戴维斯海峡和纳雷斯海峡地区的板内构造发展提供了新的框架。格陵兰板块相对于北美的C13N到C24N始新世运动使用一个欧拉旋转极点进行了计算,使用的扩散中心和断裂带由巴芬湾的卫星得出的重力数据解释,并与拉布拉多海的断裂带相结合。对古新世的C25N到C27N部分提出了一个单级极点,并且发现一个短寿命的极点对适应C24N到C25N的间隔是必要的。该运动学模型已被用于重新解释巴芬湾中部已发布的船载磁剖面,以揭示古新世的扩散中心以及始新世和古新世洋壳的界限。巴芬湾东北部的航空磁数据已被用于识别巴芬湾北部的新裂缝带。提出了板块重建,其中包含了来自陆上和海上地质和地球物理测绘的板块边界约束。在戴维斯海峡内,古新世洋壳置于一个细长的裂谷中,随后沿翁加瓦断层带被约300 km的始新世压倒。在Nares海峡地区,提出了一种“微孔板”方案,以解释同时形成的兰开斯特声音裂谷盆地和Eurekan造山带内的复杂变形。

著录项

相似文献

  • 外文文献
  • 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