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The role of pre-existing structures during rifting, continental breakup and transform system development, offshore West Greenland.

机译:西格陵兰海上的裂谷,大陆破裂和转换系统发展过程中预先存在的结构的作用。

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摘要

Continental breakup between Greenland and North America produced the small oceanic basins of the Labrador Sea and Baffin Bay, which are connected via the Davis Strait, a region mostly comprised of continental crust. This study contributes to the debate regarding the role of pre-existing structures on rift development in this region using seismic reflection data from the Davis Strait data to produce a series of seismic surfaces, isochrons and a new offshore fault map from which three normal fault sets were identified as (i) NE-SW, (ii) NNW-SSE and (iii) NW-SE. These results were then integrated with plate reconstructions and onshore structural data allowing us to build a two-stage conceptual model for the offshore fault evolution in which basin formation was primarily controlled by rejuvenation of various types of pre-existing structures. During the first phase of rifting between at least Chron 27 (ca. 62 Ma; Palaeocene), but potentially earlier, and Chron 24 (ca. 54 Ma; Eocene) faulting was primarily controlled by pre-existing structures with oblique normal reactivation of both the NE-SW and NW-SE structural sets in addition to possible normal reactivation of the NNW-SSE structural set. In the second rifting stage between Chron 24 (ca. 54 Ma; Eocene) and Chron 13 (ca. 35 Ma; Oligocene), the sinistral Ungava transform fault system developed due to the lateral offset between the Labrador Sea and Baffin Bay. This lateral offset was established in the first rift stage possibly due to the presence of the Nagssugtoqidian and Torngat terranes being less susceptible to rift propagation. Without the influence of pre-existing structures the manifestation of deformation cannot be easily explained during either of the rifting phases. Although basement control diminished into the post-rift, the syn-rift basins from both rift stages continued to influence the location of sedimentation possibly due to differential compaction effects. Variable lithospheric strength through the rifting cycle may provide an explanation for the observed diminishing role of basement structures through time.
机译:格陵兰和北美洲之间的大陆分裂产生了拉布拉多海和巴芬湾的小洋盆,这些洋盆通过戴维斯海峡相连,该地区主要由大陆壳组成。这项研究有助于就现有结构在该地区裂谷发展中的作用进行辩论,利用戴维斯海峡数据中的地震反射数据来产生一系列地震面,等时线和一个新的海上断层图,从中得出三个正断层被标识为(i)NE-SW,(ii)NNW-SSE和(iii)NW-SE。然后将这些结果与板块重建和陆上结构数据集成在一起,使我们能够为海上断层演化建立一个两阶段的概念模型,在该模型中,盆地的形成主要是通过恢复各种类型的既有结构来控制的。在裂谷的第一阶段中,至少在Chron 27(约62 Ma;古新世)之间(但可能更早)与Chron 24(约54 Ma;始新世)之间的断层主要由既有的构造控制,而斜向重新激活除了可能正常重新激活NNW-SSE结构集外,还包括NE-SW和NW-SE结构集。在Chron 24(约54 Ma;始新世)和Chron 13(约35 Ma;渐新世)之间的第二裂谷阶段,由于拉布拉多海和巴芬湾之间的横向偏移,形成了左旋Ungava转换断裂系统。这种横向偏移是在裂谷的第一阶段建立的,这可能是由于Nagssugtoqidian和Torngat地层的存在对裂谷的影响较小。没有预先存在的结构的影响,在裂谷的任何一个阶段都无法轻易地解释变形的表现。尽管地下裂隙控制减弱到裂谷后,但两个裂谷阶段的裂谷盆地仍可能由于压实效果不同而继续影响沉积位置。在裂谷周期中岩石圈强度的变化可能解释了随着时间的推移地下室结构逐渐减弱的作用。

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