Slump/Slide facies and biostratigraphy at the transition of the Cieszyn and Hradiste formations in the Cieszyn (Tesin) Section (Outer Flysch Carpathians)

IF 0.9 3区 地球科学 Q3 GEOLOGY Stratigraphy Pub Date : 2020-08-31 DOI:10.29041/STRAT.17.3.187-204
M. Bubík, J. Golonka, D. Reháková, P. Skupien, L. Švábenická, A. Waśkowska
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Abstract

ABSTRACT: New sedimentological observations in the Lower Cretaceous of the Silesian Unit and integrated biostratigraphy based on calcareous nannofossils, dinoflagellate cysts, calpionellids and foraminifers have brought new insight to the stratigraphy of the Cieszyn section. The oldest exposed strata of themudstone facies of the Cieszyn Limestone Formation are of early Berriasian age, based on calcareous nannofossil evidence. This work proposes that the Jurassic-Cretaceous boundary reported by previous authors was based on reworked microfossils. The detritic facies of the Cieszyn Limestone Formation, typically dominated by detritic-limestone turbidites, appears to be completely missing. Instead, a thick body with combined slump and slide features, of Berriasian–Valanginian age, forms the transition with the overlying lower Valanginian strata of the Hradiste Formation. The slump/slide body represents a local facies, deposited on a fault scarp related to fault-controlled extension of the Proto-Silesian Basin floor.
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外复理喀尔巴阡山脉切赞(特辛)剖面切赞组与赫拉迪斯组过渡时期的滑塌/滑动相及生物地层
摘要/ ABSTRACT摘要:西里西亚单元下白垩统沉积学新观测和基于钙质纳米化石、鞭毛藻囊、calpionellids和有孔虫的综合生物地层学研究,为切赞剖面的地层学研究带来了新的认识。根据钙质纳米化石证据,切赞灰岩组泥岩相最古老的出露地层为早贝里亚时代。本文认为前人报道的侏罗纪-白垩纪界线是基于微化石的重新加工。以碎屑灰岩浊积岩为主的切赞灰岩组碎屑岩相似乎完全缺失。相反,berriasia - - Valanginian时代的滑塌与滑动相结合的厚体与上覆的Hradiste组下Valanginian地层形成过渡。滑塌/滑动体代表了一种局部相,沉积在与断层控制的原西里西亚盆地底部伸展有关的断崖上。
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来源期刊
Stratigraphy
Stratigraphy 地学-地质学
CiteScore
1.80
自引率
6.70%
发文量
0
审稿时长
>12 weeks
期刊介绍: The journal’s mission is to publish peer-reviewed papers that use modern stratigraphic tools – biostratigraphy, chemostratigraphy, magnetostratigraphy, cyclostratigraphy, sequence stratigraphy, climatostratigraphy, lithostratigraphy, GSSPs and more – to explore broad ideas in earth history.
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