首页> 外文OA文献 >Biostratigraphy and palaeoenvironment of the Kimmeridgian-Lower Tithonian pelagic deposits of the Krížna Nappe, Lejowa Valley, Tatra Mts. (southern Poland)
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Biostratigraphy and palaeoenvironment of the Kimmeridgian-Lower Tithonian pelagic deposits of the Krížna Nappe, Lejowa Valley, Tatra Mts. (southern Poland)

机译:塔特拉山KrížnaNappe的Kimmerngian-Lower Tithonian中上层沉积物的生物地层学和古环境。 (波兰南部)

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摘要

The Upper Jurassic strata of the Krížna Unit in the Tatra Mts. comprises pelagic, fine-grained and well-oxygenated deposits. They are represented by red radiolarites and radiolarian limestones (Czajakowa Radiolarites Formation), red nodular limestones (Czorsztyn Limestones Formation) and wavy, platy or nodular light grey and reddish limestones and marlstones (Jasenina Formation). These deposits are mainly wackestones characterized by a succession of the following microfacies: radiolarian, filament-Saccocoma, Saccocoma and Globochaete–Saccocoma. The section comprises four calcareous dinoflagellate zones, i.e. the Late Kimmeridgian Moluccana Zone, and the Early Tithonian Borzai, Pulla and Malmica zones. In the uppermost part of the studied section, the Early Tithonian Dobeni Subzone of the Chitinoidella Zone has been identified. Using these biostratigraphic data, the sedimentation rate for the Late Kimmeridgian (Borzai Zone) and Early Tithonian (Dobeni Subzone of the Chitinoidella Zone) interval is estimated as 3.7 m/my. This is in accordance with the general trend of increasing sedimentation rate through the Tithonian and Berriasian. The increased supply of clastic material in the Jasenina Formation may have been caused by climate changes and continental weathering. The sedimentation was controlled mainly by eustatic changes and fluctuations in ACD and CCD levels.
机译:塔特拉山Krížna单元的上侏罗统地层。包括浮游,细粒和充氧的矿床。它们分别由红色放射性云母和放射虫石灰岩(Czajakowa放射性云母岩层),红色结核状石灰岩(Czorsztyn石灰岩岩层)以及波浪状,板状或球状浅灰色和带红色的石灰岩和泥灰岩(Jasenina岩层)代表。这些沉积物主要是瓦克石,其特征是连续有以下微相:放射虫,细丝-球菌,球菌和球藻-球菌。该部分包括四个钙鞭毛的鞭毛藻类带,即基米第纪晚期的莫卢卡纳区,以及蒂通尼早期的波扎伊,普利亚和马尔米卡带。在研究部分的最上部,已经确定了几丁质藻区的早期提通尼多贝尼分区。利用这些生物地层学数据,估计的基米底尔吉安晚期(波尔扎伊区)和提速通早期(几丁质带地区的多贝尼分区)的沉积速率为3.7 m / my。这与通过Tithonian和Berriasian增加沉积速率的总体趋势一致。 Jasenina组碎屑物质供应增加可能是由于气候变化和大陆风化引起的。沉积的控制主要是由喜庆的变化以及ACD和CCD水平的波动引起的。

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