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Climatic precession is the main driver of Early Cretaceous sedimentation in the Vocontian Basin (France): Evidence from the Valanginian Orpierre succession

机译:气候进动是Vocontian盆地(法国)早白垩世沉积的主要驱动力:来自瓦朗吉尼奥皮尔系的证据

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The Valanginian sediments outcropping in the Vocontian Basin (SE France) exhibit striking marl-limestone alternations, which were formed under the influence of orbital forcing and which have served for geochronological and paleoenvironmental studies. Previous studies have suggested an obliquity forcing during the Late Valanginian interval, reflecting specific environmental conditions such as polar ice. Using a cyclostratigraphic correlation of previously studied sections and performing time-series analysis on the most complete Late Valanginian interval we argue that the climatic precession cycle is the primary driver of these marl-limestone alternations. In addition, we highlight the modulation of the precession by the similar to 100 and 405 kyr eccentricity cycles. We suggest that the cyclostratigraphic misinterpretation (i.e., obliquity-forcing hypothesis) results mainly from poorly preserved 405 kyr eccentricity cycles, due to local hiatuses and/or "missed beats". This study shows the potential of cyclostratigraphic correlations for the detection and quantification of differential hiatuses and/or "missed beats" within intrabasinal sequences, hence providing constraints on cyclostratigraphic interpretations. The recorded 405 kyr eccentricity cycle is of prominent amplitude, and controlled the fourth-order sea-level sequences. These latter are faithfully detected through cyclostratigraphically inferred sedimentation rate. Finally, we show that the well-known, pronounced lithostratigraphic markers/intervals in the basin were orbitally paced by the 405 kyr eccentricity extrema. This is a good argument for the strong impact of this cyclicity on the sedimentary processes, especially during greenhouse periods. (C) 2015 Elsevier B.V. All rights reserved.
机译:Vocontian盆地(法国东南部)的瓦朗吉尼亚沉积物露头显示出明显的泥灰岩交替,它们是在轨道强迫的影响下形成的,并已用于地质年代学和古环境研究。先前的研究表明,在晚瓦朗吉尼河间隔期间存在倾角强迫,反映了特定的环境条件,例如极地冰。利用先前研究过的断层的地层相关性,并对最完整的晚瓦朗吉尼期进行时间序列分析,我们认为气候旋进周期是这些泥灰岩交替的主要驱动力。此外,我们通过类似于100和405 kyr的偏心率周期突出了进动的调制。我们建议,由于局部裂隙和/或“漏失”,对地层的曲解(即强迫倾斜的假说)主要是由于保存不佳的405年偏心率周期造成的。这项研究显示了旋回地层相关性在探测和量化基底层序内不同裂隙和/或“缺失跳动”方面的潜力,从而为旋回地层解释提供了限制。记录的405 kyr偏心周期具有明显的振幅,并控制了四阶海平面序列。后者是通过地层地层推断的沉积速率来真实检测到的。最后,我们表明,该盆地中众所周知的岩性地层学标记/间隔是由405千瓦偏心极值沿轨道运动的。对于这种周期性对沉积过程的强烈影响是一个很好的论据,尤其是在温室时期。 (C)2015 Elsevier B.V.保留所有权利。

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