The Rigelj Formation, a new lithostratigraphic unit of the Lower Permian in the Karavanke Mountains (Slovenia/Austria)

IF 1.7 4区 地球科学 Q2 Earth and Planetary Sciences
M. Novak, K. Krainer
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引用次数: 0

Abstract

Abstract The Rigelj Formation is a new lithostratigraphic unit of the Lower Permian Rattendorf Group in the Karavanke Mountains. The Formation is up to 105 m thick and mainly composed of siliciclastic and fossiliferous carbonate sediments that are entirely of shallow-marine setting. Conglomerates are interpreted as shoreface deposits, sandstones as deposits of the upper to lower shoreface, and fossiliferous siltstones as offshore deposits. Fossiliferous limestones were deposited in a shallow, open-marine shelf environment of moderate to low energy (wackestone, floatstone) and strong water turbulence (packstone, rudstone). The siliciclastic and carbonate lithotypes form some well-developed backstepping cycles starting with conglomerates, overlain by sandstones, siltstones and fossiliferous limestones that formed in an open shelf environment without siliciclastic influx. Similar sedimentary cycles are developed in the Grenzland Formation of the Carnic Alps. The fusulinid fauna indicates that the Rigelj Formation ranges in age from the late Asselian to the middle Sakmarian. In the western Karavanke Mountains and near Trögern, the Lower Permian lithostratigraphic succession is very similar to the succession in the Carnic Alps with Tarvis Breccia resting on the Trogkofel Limestone and the Goggau Limestone. Unlike this, in the central part of the Karavanke Mountains (Dovžanova Soteska–Mt. Pleschiwetz/Plešivec area) the Rigelj Formation is erosively overlain by the Tarvis Breccia. The stronger diversification of the sedimentary environments within the Karavanke-Carnic Alps in the Lower Permian after the uniform sedimentation in the Upper Carboniferous can be attributed to block-faulting.
Rigelj组,卡拉万克山脉下二叠纪的一个新的岩石地层单元(斯洛文尼亚/奥地利)
Rigelj组是卡拉万克山脉下二叠统Rattendorf群中一个新的岩石地层单元。该组厚度可达105 m,主要由完全为浅海环境的硅屑和化石碳酸盐沉积物组成。砾岩被解释为岸面沉积,砂岩被解释为上到下岸面沉积,化石粉砂岩被解释为近海沉积。化石灰岩沉积于中低能(碎屑岩、浮石)和强水湍流(包覆岩、硬石)的浅海陆架环境。硅屑岩型和碳酸盐岩型形成了发育良好的逆旋回,由砾岩开始,上覆砂岩、粉砂岩和化石灰岩,形成于无硅屑流入的开放陆架环境。类似的沉积旋回发育在卡尼阿尔卑斯山脉的格林兹兰组。镰孢虫动物群表明,Rigelj组的年龄介于亚塞利亚晚期至萨克玛利安中期。在卡拉万克山脉西部和Trögern附近,下二叠统岩石地层演替与卡尼阿尔卑斯山脉的演替非常相似,塔维斯角砾岩位于Trogkofel灰岩和Goggau灰岩之上。与此不同的是,在卡拉万克山脉的中部(Dovžanova Soteska-Mt。Pleschiwetz/Plešivec地区)Rigelj组被Tarvis角砾岩侵蚀覆盖。上石炭统均匀沉积后,下二叠统Karavanke-Carnic阿尔卑斯地区沉积环境多样性增强,可归因于断块作用。
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来源期刊
Austrian Journal of Earth Sciences
Austrian Journal of Earth Sciences Earth and Planetary Sciences-Paleontology
CiteScore
3.10
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: AUSTRIAN JOURNAL OF EARTH SCIENCES is the official journal of the Austrian Geological, Mineralogical and Palaeontological Societies, hosted by a country that is famous for its spectacular mountains that are the birthplace for many geological and mineralogical concepts in modern Earth science. AUSTRIAN JOURNAL OF EARTH SCIENCE focuses on all aspects relevant to the geosciences of the Alps, Bohemian Massif and surrounding areas. Contributions on other regions are welcome if they embed their findings into a conceptual framework that relates the contribution to Alpine-type orogens and Alpine regions in general, and are thus relevant to an international audience. Contributions are subject to peer review and editorial control according to SCI guidelines to ensure that the required standard of scientific excellence is maintained.
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