Ammonite occurrences in North Sea cores: implications for Jurassic Arctic–Mediterranean marine seaway connectivity

IF 0.5 4区 地球科学 Q4 GEOLOGY
N. Morton, V. Mitta, J. Underhill
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引用次数: 3

Abstract

The paucity of ammonite recovery from North Sea wells has meant that offshore correlations are largely dependent upon microfossil assemblages. While rare, ammonites have been found in a few boreholes during the course of oil exploration activities. The occurrence of ammonites in ten wells in the UK sector of the Viking Graben and the Moray Firth rift arms provides a new basis by which to demonstrate that there was a distinct separation between Arctic and sub-Mediterranean species that lasted from Bajocian to Early Callovian times. Five wells contain ‘Boreal Bathonian' ammonites from the Arctic Realm. Arctocephalites from the Boreal Arcticus Zone (uppermost Bajocian) correlates basinal partly anoxic mudstones in the Beryl Embayment (9/13b) with both bioturbated siltstones in the southern Viking Graben (9/10b), and calcareous mudstones in the East Shetland Basin (211/21). Upper Bajocian Pompeckji Zone Cranocephalites and younger Arcticoceras from Lower to Middle Bathonian Greenlandicus, Ishmae and Cranocephaloide zones are confined to 211/21 demonstrating that the marine transgression began earlier and lasted longer. A Cadoceras from well 3/3-8 dates to the Lower Callovian Koenigi and Calloviense zones during which renewed extensional faulting re-established ammonite migration routes between the Boreal and sub-Mediterranean realms. A Middle Oxfordian (Densiplicatum Zone) Perisphinctes from well 22/5b-8 confirms an episode of northward migration from the sub-Mediterranean into the Boreal Realm. Upper Oxfordian (Regulare to Rosenkantzi zones) Amoeboceras in wells 211/21-1 and 9/13b-19 are close to Upper Bajocian/Lower Bathonian faunas, suggesting an absence of Upper Bathonian to Middle Oxfordian strata as a result of rift-related footwall uplift and erosion. In four wells from Block 15/21 (-4, -11, -12A and -25) Lower Kimmeridgian ammonites have been documented, including Rasenia, Amoebites, Aulacostephanoides and Zenostephanoides, from the Baylei (?), Cymodoce, Mutabilis and Eudoxus zones, the latter (confirmed at well 13/28b-8) dating a widespread regional marine flooding surface in the Inner Moray Firth. Supplementary material: The detailed measurements of dimensions of the ammonites described are available at: https://doi.org/10.6084/m9.figshare.c.5087313
北海岩心中菊石的赋存:侏罗纪北极-地中海海路连通性的意义
北海油井中菊石回收率低,这意味着近海相关性在很大程度上取决于微体化石组合。虽然罕见,但在石油勘探活动过程中,在一些钻孔中发现了菊石。维京地堑和马里湾裂谷臂英国部分的十口井中菊石的出现为证明北极和亚地中海物种之间存在明显的分离提供了新的基础,这种分离从巴乔阶一直持续到卡洛维早期。五口井中有来自北极地区的“北方巴通”菊石。北部Arcticus带(最上层Bajocian)的Arctocephalites将贝里尔湾的盆地部分缺氧泥岩(9/13b)与维京地堑南部的生物扰动粉砂岩(9/10b)以及设得兰盆地东部的钙质泥岩(211/21)相关联。上巴乔阶-庞佩基带-头海侵和下巴通阶-中巴通阶Greenlandicus、Ishmae和头海侵带的年轻角海侵被限制在211/21,这表明海侵开始得更早,持续时间更长。3/3-8井的Cadoceras可追溯到下卡洛维-柯尼吉和卡洛维登塞带,在此期间,新的伸展断层作用重新建立了北方和亚地中海地区之间的菊石迁移路线。来自22/5b-8井的中牛津阶(Densiplicatum区)Perisphectes证实了从次地中海向北迁移到北方地区的事件。211/21-1井和9/13b-19井中的上牛津阶(Regulare至Rosenkantzi带)砂壳类与上巴乔阶/下巴通阶动物群接近,表明由于裂谷相关的下盘抬升和侵蚀,上巴通阶至中牛津阶地层不存在。在15/21区块(-4、-11、-12A和-25)的四口井中,记录了下基梅里阶菊石,包括Baylei(?)、Cymodoce、Mutabilis和Eudoxus带的Rasenia、Amoebites、Aulacostephanoides和Zenostephanides,后者(在13/28b-8井确认)确定了内马里湾大范围区域海洋泛滥面的年代。补充材料:有关所述菊石尺寸的详细测量结果,请访问:https://doi.org/10.6084/m9.figshare.c.5087313
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来源期刊
Scottish Journal of Geology
Scottish Journal of Geology 地学-地质学
CiteScore
1.70
自引率
0.00%
发文量
10
审稿时长
>12 weeks
期刊介绍: Although published only since 1965, the Scottish Journal of Geology has a long pedigree. It is the joint publication of the Geological Society of Glasgow and the Edinburgh Geological Society, which prior to 1965 published separate Transactions: from 1860 in the case of Glasgow and 1863 for Edinburgh. Traditionally, the Journal has acted as the focus for papers on all aspects of Scottish geology and its contiguous areas, including the surrounding seas. The publication policy has always been outward looking, with the Editors encouraging review papers and papers on broader aspects of the Earth sciences that cannot be discussed solely in terms of Scottish geology. The diverse geology of Scotland continues to provide an important natural laboratory for the study of earth sciences; many seminal studies in geology have been carried out on Scottish rocks, and over the years the results of much of this work had been published in the Journal and its predecessors. The Journal fully deserves its high reputation worldwide and intends to maintain its status in the front rank of publications in the Earth sciences.
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