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Late-Pleistocene slope evolution using characteristics of rock cities in Western New York, USA

机译:利用美国纽约西部岩石城市的特征进行晚更新世斜坡演化

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Exposed massive bedrock cliffs often exhibiting a warren-like network of joints and crevices are common features in resistant conglomerates and sandstones of the Allegheny Plateau in New York, Pennsylvania and Ohio. Located south of the former extent of glacial ice, they are locally referred to as rock cities. In this study, a detailed mapping campaign of Thunder Rocks, an exposure of Olean Conglomerate of the Pennsylvanian Pottsville group, was conducted. Rock hardness data using a Schmidt hammer were collected to test the hypothesis that slow, downslope movement under periglacial conditions was responsible for the presence and distribution of detached blocks. Slope data were collected at the site and assessed from a 10 m Digital Elevation Model (DEM) in ArcGIS. Elevation and aspect were also extracted from the DEM for analyses. The distribution of rocks indicates a downslope decrease in dimension (Pearson r = 0.713, alpha = 0.01). Hardness values measured normal to the bedding show a decrease downslope (r = 0.678; alpha = 0.01); rock hardness values measured parallel to the bedding do not show this relation. The spatial distribution of hardness values indicates two distinct periods of downslope transfer. The presence of two colluvial units in the region supports this observation and suggests that the timing of block movement is associated with slope instability following maximum glacial conditions, not during the period of most intense periglacial activity.
机译:在纽约,宾夕法尼亚州和俄亥俄州的阿勒格尼高原的抵抗性砾岩和砂岩中,裸露的巨大基岩悬崖经常表现出类似沃伦的节理和缝隙网络,这是其常见特征。位于前冰川冰河以南,在当地被称为岩石城市。在这项研究中,进行了雷霆岩石的详细制图活动,这是宾夕法尼亚州波茨维尔小组的奥利安集团的一次曝光。使用施密特锤(Schmidt Hammer)收集了岩石硬度数据,以检验假说,即在冰缘条件下缓慢的下坡运动是造成分离块存在和分布的原因。在现场收集坡度数据,并通过ArcGIS中的10 m数字高程模型(DEM)进行评估。还从DEM中提取了高程和长宽比进行分析。岩石的分布表明坡度减小(皮尔森r = 0.713,α= 0.01)。垂直于被褥测量的硬度值显示出下降的下降(r = 0.678; alpha = 0.01);平行于地层测量的岩石硬度值未显示此关系。硬度值的空间分布表明了两个不同的下坡过渡期。该地区存在两个冲积单元,这支持了这一观察结果,并表明在最大的冰川条件下,而不是在最强烈的冰川期活动期间,块体运动的时机与斜坡的不稳定性有关。

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