斯瓦尔巴群岛下白垩统全地层学:北欧盆地拼图中的北极关键部分

M. E. Jelby, S. Grundvåg, K. Śliwińska, P. Alsen, Madeleine L. Vickers, S. Olaussen, Lars Stemmerik
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摘要

高古纬度北极-北寒带地区的下白垩统地层一般比低纬度的泰提安(Tethyan)地层了解得更少,因此无法进行区域相关性分析,也无法评估这一重要的高二氧化碳排放时期的全球气候动态。本文综合了最新发表的沉积学、生物地层学、岩石物理学、层序地层学、化学地层学和年代地层学成果,并以五个地点的新测量剖面为补充,提出了斯瓦尔巴群岛 Rurikfjellet 地层瓦朗基元-下巴利米亚统硅碎屑斜坡演替的全地层方案和岩石地层学修订。以近海泥岩为主的 Wimanfjellet 层(瓦朗基年-下巴雷姆统)被保留下来,同时根据其独特的地理、沉积学和地层学特征定义了三个新层:Adventpynten层(瓦朗基元上统(?基库托登(Kikutodden)岩组(豪特立维-下巴雷姆统)被弃置,取而代之的是北部波赫曼尼塞特(Bohemanneset)岩组和南部福特格拉夫雷根(Fotografryggen)岩组,分别代表:异质前三角洲至三角洲前沉积;以及砂质近海过渡至海岸表层沉积。Rurikfjellet Formation(鲁里克菲耶莱特地层)记录了瓦朗基元-最早的豪特里维世晚期海岸线的阶降,随后是豪特里维世晚期-巴雷姆世早期海岸线的后退以及跨越低坡度斜坡的洪水,在今天出露带的范围内,该地层从未经历过完全回归大陆沉积的过程。
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Lower Cretaceous holostratigraphy in Svalbard: the Arctic key piece of the Boreal basin puzzle
Lower Cretaceous stratigraphy of the high palaeo-latitude Arctic-Boreal Realm is generally more poorly understood than its lower-latitude Tethyan counterpart, prohibiting regional correlations and evaluation of global climate dynamics during this important high- p CO 2 period. In this paper, a holostratigraphic scheme and lithostratigraphic revision are presented for the Valanginian-lower Barremian, siliciclastic ramp succession of the Rurikfjellet Formation in Svalbard, drawn from synthesis of the latest published sedimentological, biostratigraphic, petrophysical, sequence stratigraphic, chemostratigraphic and chronostratigraphic results, supplemented by new measured sections from five localities. The offshore mudstone-dominated Wimanfjellet Member (Valanginian-lower Barremian) is retained, whereas three new members are defined according to their distinct geographic, sedimentological and stratigraphic characteristics: The Adventpynten Member (upper(?) Valanginian-lowermost upper Hauterivian) constitutes a thick, relatively localized succession of mass-transport deposits. The Kikutodden Member (Hauterivian-lower Barremian) is discarded and replaced by the northern Bohemanneset Member and southern Fotografryggen Member, representing respectively: heterogeneous prodelta to delta front deposits; and sandy offshore transition to shoreface deposits. The Rurikfjellet Formation records Valanginian-earliest late Hauterivian shoreline progradation followed by late Hauterivian-early Barremian shoreline retreat and flooding across a low-gradient ramp, which never experienced full regression into continental deposits within the extent of the present-day outcrop belt.
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