首页> 外文期刊>The Depositional Record >Deformation ‘boundary front’ movements in subglacial tills—A microsedimentological perspective from till sequences near Pine Point, NWT, Canada
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Deformation ‘boundary front’ movements in subglacial tills—A microsedimentological perspective from till sequences near Pine Point, NWT, Canada

机译:冰川下耕作中的变形“边界前沿”运动-从加拿大西北西北部Pine Point附近耕作序列的微观沉积学视角

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Investigations of glacial sediment exposures in a former open pit in the Pine Point Mining District, Northwest Territories, reveal evidence of changes in stress magnitude as exhibited by the movement of deformation ‘fronts’ within subglacial tills, as evident through micromorphological analysis. Indications of deformation, driven by stress fluctuations, were observed throughout a set of vertical subglacial till samples associated with the Laurentide Ice Sheet. These tills exhibit multiple sub‐lithofacies variations in concert with marked changes in microshear orientation, which can be directly related to changing stress levels within a subglacial deforming bed. The evidence of changes in till stress conditions is typical of subglacial tills occurring beneath an active temperate ice mass within a soft deforming bed. As differing ‘layers’ of till that form a mosaic‐like pattern become immobilized and ‘detached’ subjacent to the deforming bed sediments, a signature of this action is recorded within the tills as sequences of specific microstructures. These microstructures are part of a spectrum of micro‐forms that develop as consequence of changes in stress, porewater content and clay content within the ‘fault‐gouge’—like environment formed beneath an active temperate ice sheet. A model is developed that uses data from Pit O‐28 demonstrating where deformation ‘boundary front’ evidence in the form of deformation bands has developed as basal driven stress levels have penetrated active deforming sediments. The evidence from Pine Point indicates that till acts as an excellent palaeo‐strain record of past active glacial processes, subglacial basal thermal conditions and sediment mobility.
机译:对西北地区松点矿区一个前露天矿山中冰川沉积物的调查表明,通过微形态学分析可以明显地看出应力变化的证据,如冰川下耕作中的变形“前沿”运动所显示的那样。在整个与Laurentide冰盖相关的垂直冰川下样品中观察到了由应力波动驱动的变形迹象。这些耕层表现出多种亚岩相变化,并伴随着微剪切方向的显着变化,这可能与冰下变形床内应力水平的变化直接相关。耕层应力条件发生变化的证据是典型的冰川下耕层,发生在软形变质层中活跃的温带冰团之下。随着形成马赛克状图案的不同“耕作层”被固定并“分离”在变形床沉积物的下方,这种作用的特征被记录在耕作层中,作为特定的微结构序列。这些微结构是微观形式的一部分,这些微观形式是由于“断层仪”内应力,孔隙水含量和黏土含量的变化而形成的,就像活跃的温带冰盖下形成的环境一样。使用来自Pit O‐28的数据开发了一个模型,该模型表明随着基础驱动应力水平渗透到活动的变形沉积物中,变形带形式的变形“边界前沿”证据已经形成。 Pine Point的证据表明,直到过去,它一直是过去活跃的冰川过程,冰川下基底热条件和沉积物迁移性的极佳古应变记录。

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