The sedimentology and depositional environments of the Bastians Dal and Muslingebjerg formations: evidence for the earliest phases of Jurassic rifting in North-East Greenland

IF 2 4区 地球科学 Q1 GEOLOGY
S. Andrews, H. Vosgerau, J. Bojesen‐Koefoed
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Abstract

The aim of this study is to elucidate the character of the earliest phases of Jurassic rifting in North-East Greenland. To achieve this, detailed sedimentological analysis and geological mapping were undertaken on the outcrops of central Kuhn Ø (74°53’55’’N,20°20’56”W). In this region the basement is overlain by the fluvial Bastians Dal Formation (Middle Jurassic) which is, in turn, overlain by the coal-bearing Muslingebjerg Formation. A maximum thickness of 140 m is calculated for the Bastians Dal Formation and mapping of stratal geometries demonstrates thinning to both the north and south, confirming that these deposits infill a palaeovalley. Predominantly south-westward palaeocurrent orientations are observed and likely reflect the orientation of the palaeovalley (NE–SW). The overlying Muslingebjerg Formation displays significant lateral variations in thickness as well as facies, thickening from a 5-m-thick coal seam in the north to 50 m in the south. Southern outcrops include two intervals of fine-grained sandstones displaying low-angle and trough cross-bedding some of which contain suggestions of tidal bundling. The arrangement of facies suggests that coal formation occurred in both fluvial- and shallow-marine (tidal?) environments. Coals are similar to those described elsewhere from the Muslingebjerg Formation and display subtle differences consistent with variable degrees of marine influence. Mapping demonstrates the presence of an NE–SW-oriented bounding fault in the south of the region into which the Muslingebjerg Formation thickens. This likely also controlled the orientation of the underlying NE–SW-aligned palaeovalley and is oblique to the proposed overall N–S orientation of faulting related to rifting through the Mid to Late Jurassic. Instead, these alignments resemble those that define pre-Jurassic phases of rifting and may therefore indicate a transitional phase of tectonism. Faulting on a similar alignment can be traced SW, cutting Lindeman Fjord and following the valleys east of the A. P. Olsen Land plateau.
bastian Dal和Muslingebjerg组的沉积学和沉积环境:格陵兰东北部侏罗纪裂陷最早阶段的证据
本研究的目的是阐明格陵兰东北部侏罗纪裂谷作用最早阶段的特征。为了实现这一点,对库恩中部(74°53'55''N,20°20'56“W)的露头进行了详细的沉积学分析和地质测绘。在该区域,基底被河流沉积的Bastians Dal组(侏罗纪中期)覆盖,后者又被含煤的Muslingebjerg组覆盖。Bastians Dal组的最大厚度为140 m,地层几何形状的测绘表明,向北和向南都有变薄,证实了这些矿床填充了一个古山谷。观察到的古水流方向主要为西南方向,可能反映了古河谷(NE–SW)的方向。上覆Muslingebjerg组在厚度和相方面表现出显著的横向变化,从北部的5米厚煤层增厚到南部的50米。南部露头包括两个细粒砂岩层段,显示低角度和槽状交错层理,其中一些含有潮汐捆绑的迹象。相的排列表明,煤的形成既发生在河流环境中,也发生在浅海(潮汐?)环境中。煤与Muslingebjerg组其他地方描述的煤相似,并显示出与不同程度的海洋影响一致的细微差异。测绘表明,Muslingebjerg组增厚区域南部存在一条NE–SW方向的边界断层。这可能也控制了下伏NE–SW走向的古河谷的方向,并与侏罗纪中晚期与裂谷作用有关的断层的拟议总体N–S方向倾斜。相反,这些线形类似于定义前侏罗纪裂谷阶段的线形,因此可能表明构造作用的过渡阶段。类似路线上的断层可追溯到西南方向,切割林德曼峡湾,并沿着a.P.Olsen陆地高原以东的山谷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Geus Bulletin
Geus Bulletin GEOLOGY-
CiteScore
2.80
自引率
17.60%
发文量
8
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