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Lithostratigraphy and biostratigraphy of the Lower Carboniferous (Mississippian) carbonates of the southern Askrigg Block, North Yorkshire, UK

机译:英国北约克郡南askrigg区块下石炭统(密西西比)碳酸盐岩的岩石地层学和生物地层学

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摘要

A rationalized lithostratigraphy for the Great Scar Limestone Group of the southeast Askrigg Block is established. The basal Chapel House Limestone Formation, assessed from boreholes, comprises shallow-marine to supratidal carbonates that thin rapidly northwards across the Craven Fault System, onlapping a palaeotopographical high of Lower Palaeozoic strata. The formation is of late Arundian age in the Silverdale Borehole, its northernmost development. The overlying Kilnsey Formation represents a southward-thickening and upward-shoaling carbonate development on a south-facing carbonate ramp. Foraminiferal/algal assemblages suggest a late Holkerian and early Asbian age, respectively, for the uppermost parts of the lower Scaleber Force Limestone and upper Scaleber Quarry Limestone members, significantly younger than previously interpreted. udThe succeeding Malham Formation comprises the lower Cove Limestone and upper Gordale Limestone members. Foraminiferal/ algal assemblages indicate a late Asbian age for the formation, contrasting with the Holkerian age previously attributed to the Cove Limestone. The members reflect a change from a partially shallow-water lagoon (Cove Limestone) to more open-marine shelf (Gordale Limestone), coincident with the onset of marked sea-level fluctuations and formation of palaeokarstic surfaces with palaeosoils in the latter. Facies variations along the southern flank of the Askrigg Block, including an absence of fenestral lime-mudstone in the upper part of the Cove Limestone and presence of dark grey cherty grainstone/packstone in the upper part the Gordale Limestone are related to enhanced subsidence during late Asbian movement on the Craven Fault System. This accounts for the marked thickening of both members towards the Greenhow Inlier.ud
机译:建立了东南阿斯格格街区大疤石灰岩群的合理岩性地层学。从钻孔进行评估的基底教堂之家石灰岩地层包括浅海相至上旋碳酸盐,这些碳酸盐向北迅速穿过Craven断层系统变薄,与下古生界地层古地形相重叠。该地层是最北端的开发区Silverdale钻孔中的阿伦迪亚晚期。上覆的Kilnsey组代表在朝南的碳酸盐岩坡道上向南增厚,向上浅滩的碳酸盐岩发育。有孔虫/藻类组合分别表明,较低的Scaleber力石灰石成员和上部的Scaleber采石场石灰石成员的最上层分别为晚期Holkerian和Asbian早期年龄,比以前解释的要年轻得多。 ud后续的Malham组包括下部的湾石灰岩和上部的Gordale石灰岩成员。有孔虫/藻类组合表明该地层晚期为阿斯比亚时代,与之前归因于小海湾石灰岩的霍尔克时代不同。成员反映了从部分浅水泻湖(科夫石灰岩)到更开放的海架(戈代尔石灰岩)的变化,这与明显的海平面波动的发作以及在后者中古土壤形成的古岩溶表面相吻合。 Askrigg区块南部侧面的相变,包括在Cove石灰岩上部没有粉状的灰泥岩,以及在Gordale石灰岩上部存在深灰色的乳清粒状/堆积岩,与后期沉降有关。 Craven Fault System上的Asbian运动。这说明两个成员都向Greenhow Inlier显着增厚。 ud

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