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Microfacies development, sea-level change, and conodont stratigraphy of Famennian mid- to deep platform deposits of the Beringhauser Tunnel section (Rheinisches Schiefergebirge, Germany)

机译:Beringhauser隧道段(德国莱茵尼希斯·谢弗尔盖比格)的法门尼中到深平台沉积物的微相发育,海平面变化和牙形质地层

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High resolutional microfacies data from the Beringhauser Tunnel section in the northern part of the Rheinisches Schiefergebirge allow the reconstruction of a relative sea-level curve. Distinctive sedimentological signals in this cephalopod limestone section indicate the positions of sea-level lowstands that correlate well with preexisting sea-level curves. Only slight differences in some lowstand positions have been observed by means of conodont biostratigraphy. The basal Famennian portion of the succession at the Beringhauser Tunnel section exposes microbial sedimentary structures reported from the Rheinisches Schiefergebirge for the first time that are indicative of initial mud-mound formation or mud-mound flanks. Further mud-mound growth with the development of a synsedimentary relief was stopped, probably due to drowning.
机译:Rheinisches Schiefergebirge北部的Beringhauser隧道断面的高分辨率微相数据可以重建相对的海平面曲线。该头足类石灰石剖面中独特的沉积学信号表明海平面低位的位置与先前存在的海平面曲线密切相关。通过牙形生物地层学仅观察到一些低位的位置略有不同。 Beringhauser隧道断层的基层Famennian演替部分首次暴露了Rheinisches Schiefergebirge所报告的微生物沉积结构,这些沉积结构指示了最初的泥丘形成或泥丘侧面。可能由于溺水而停止了伴随沉积物释放的进一步泥土生长。

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