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首页> 外文期刊>Acta geologica Polonica >Evidence of Late Cretaceous/Cenozoic strike-slip faulting within the late Palaeozoic Holy Cross Mts. Fold Belt, Poland: Józefka releasing stepover
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Evidence of Late Cretaceous/Cenozoic strike-slip faulting within the late Palaeozoic Holy Cross Mts. Fold Belt, Poland: Józefka releasing stepover

机译:晚古生代圣十字山内晚白垩世/新生代走滑断层的证据。波兰折叠带:约瑟夫卡(Józefka)释放跨境

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The aim of this study was to reconstruct the location mechanism of a Triassic sandstone wedge within folded?Palaeozoic rocks. A vertically oriented Buntsandstein succession (Lower Triassic) from Józefka Quarry (Holy?Cross Mountains, central Poland), steeply wedged within folded Devonian carbonates, is recognised as an?effect of normal faulting within a releasing stepover. The sandstone succession, corresponding to the Zagnańsk?Formation in the local lithostratigraphic scheme, is represented by two complexes, interpreted as deposits of a?sand-dominated alluvial plain (older complex), and coarse-grained sands and gravels of a braided river system?(younger complex). The sandstone complex was primarily formed as the lowermost part of the several kilometres?thick Mesozoic cover of the Holy Cross Mountains Fold Belt (HCFB), later eroded as a result of the Late?Cretaceous/Paleogene uplift of the area. Tectonic analysis of the present-day position of the deformed sandstone?succession shows that it is fault-bounded by a system of strike-slip and normal faults, which we interpret as a?releasing stepover. Accordingly, the formation of the stepover in the central part of the late Palaeozoic HCFB is?evidence of a significant role of strike-slip faulting within this tectonic unit during Late Cretaceous/Paleogene?times. The faulting was probably triggered by reactivation of the terminal Palaeozoic strike-slip fault pattern?along the western border of the Teisseyre–Tornquist Zone.
机译:这项研究的目的是重建三叠纪砂岩楔在褶皱古生界岩石中的定位机制。来自约瑟夫卡采石场(波兰中部,圣十字山脉)的垂直定向的本茨坦斯坦演替(下三叠纪),陡峭地楔入泥盆纪碳酸盐岩中,被认为是释放阶跃过程中正断层的影响。砂岩演替对应于当地岩性地层学方案中的Zagnańsk?地层,由两个复合物表示,解释为以砂岩为主的冲积平原(较旧的复合物)的沉积物,以及辫状河系的粗粒沙和砾石?(年轻的复合体)。砂岩复合体主要形成于圣十字山脉褶皱带(HCFB)几公里厚的中生代覆盖层的最下部,后来由于该地区晚白垩世/古近纪隆升而受到侵蚀。对变形砂岩成功演替的当前位置进行的构造分析表明,它是由走滑和正断层系统界定的断层,我们将其解释为释放阶跃。因此,在古生代晚期HCFB的中部形成阶跃,是在白垩纪/古近纪时期这个构造单元内走滑断层的重要作用的证据。断层可能是由于重新恢复了特伊西尔-托奎斯特地区西边界的古生代走滑断层型。

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