East Siberian Sea Composite Tectono-Sedimentary Element, Siberian Arctic

S. Drachev, V. Ershova, R. Myklebust, Pavel V. Rekant
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Abstract

The East Siberian Sea Composite Tectono-Sedimentary Element (ESS CTSE) occupies most of the central and southern parts of the East Siberian Sea (ESS) and extends onshore into the Chukchi Peninsula. The first multichannel seismic reflection data, acquired in this region in 1989 and 1991 revealed its structural complexity and the presence of a deep sedimentary depocentre in its central part. In the 2010s, the first long-offset seismic data provided a much better understanding of the geology of this remote segment of the Arctic shelf. It includes a large extensional basin that started to form in the Albian (?)-Cenomanian, postdating the Barremian-Aptian Chukotkan orogeny and formation of the New Siberian-Chukchi Fold-and-Thrust Belt (FTB). The latter experienced extensional collapse and developed into the tectonic basement that underlies the CTSE over its entire extent. The ESS CTSE is mainly composed of Upper Cretaceous-Holocene siliciclastic sedimentary strata with a total thickness up to 14 km. This succession has not been drilled deep enough to test its hydrocarbon potential since the beginning of exploration around 2013. However, the strata contain abundant terrestrial organic matter and are considered as potential source rocks sufficient for generating gas accumulations.
东西伯利亚海复合构造沉积元素,西伯利亚北极地区
东西伯利亚海复合构造沉积要素(ESS CTSE)占据了东西伯利亚海(ESS)中部和南部的大部分区域,并延伸至楚科奇半岛沿岸。1989 年和 1991 年在该地区采集的第一批多道地震反射数据揭示了其结构的复杂性以及中部存在的深层沉积沉积中心。2010 年代,第一批长偏移地震数据使人们对北极大陆架这一偏远地区的地质情况有了更好的了解。它包括一个大型伸展盆地,该盆地开始形成于白垩纪(?)-乾隆年间,晚于巴里米亚-中古生代楚科奇造山运动和新西伯利亚-楚科奇褶皱推覆带(FTB)的形成。新西伯利亚-楚科奇褶皱推覆带经历了伸展塌陷,并发展成为CTSE整个区域的构造基底。ESS CTSE 主要由上白垩世-全新世硅质沉积地层组成,总厚度达 14 千米。自 2013 年左右开始勘探以来,尚未对该层系进行足够深的钻探,以测试其油气潜力。不过,该地层含有丰富的陆相有机物,被认为是足以产生天然气储量的潜在源岩。
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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