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Subglacial till formation: Microscale processes within the subglacial shear zone

机译:冰下直至形成:冰下剪切带内的微尺度过程

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摘要

This was a study of subglacial deformation till genesis from a modern temperate glacier, at Skálafellsjökull, Iceland. Detailed microscale properties of till samples (from Scanning Electron Microscope [SEM] and thin section analysis) were examined from a glacial site with in situ subglacial process monitoring and an exposed subglacial surface in the foreland. Two lithofacies were examined, a grey sandy till derived from the ash and basalt, and a silty reddish brown till derived from oxidized paleosols and/or tephra layers. These also represented a clay-content continuum from low (0.3%) to high (22.3%). The evolution from debris to subglacial till was investigated. This included a reduction in grain-size (21% for grey lithology, 13% reddish brown lithology), and reduction in rounding (RA) (32% for the grey lithology, 26% for the reddish brown lithology), and the quantification and analysis of the different grain erosion/comminution processes in the resultant till. It was shown that the microstructures within a till were dependent on shear strain and glaciological conditions (deformation history). The low clay content tills were dominated by linear structures (lineations and boudins, and anisotropic microfabric) whilst the higher clay content tills were dominated by rotational structures (turbates and plaster, and isotropic microfabric). These results are important in our understanding of the formation of both modern and Quaternary tills and informs our reconstruction of past glacial dynamics.
机译:这是对冰川下变形的研究,直到冰岛Skálafellsjökull的现代温带冰川成因。从冰川地点现场调查冰柱样品的详细微观尺度特性(来自扫描电子显微镜[SEM]和薄片分析),并进行前冰河下过程监测和前陆裸露的冰下表面。检查了两个岩相,一个灰色的沙土,来自灰和玄武岩,一个粉红色的红褐色的土,来自氧化的古土壤和/或特菲拉层。这些也代表了从低(0.3%)到高(22.3%)的粘土含量连续体。研究了从碎片到冰下岩层的演化。其中包括减小晶粒尺寸(灰色岩性减少21%,红棕色岩性减少13%)和舍入(RA)(灰色岩性减少32%,红棕色岩性减少26%)以及量化和降低耕作中不同谷物侵蚀/粉碎过程的分析。结果表明,耕till中的微观结构取决于剪切应变和冰川条件(变形历史)。黏土含量低的耕作占主导地位的是线性结构(线条和布丁,以及各向异性的微织物),黏土含量较高的耕作则占主导地位的是旋转结构(湍流和灰泥以及各向同性的微织物)。这些结果对于我们理解现代和第四纪耕作的形成非常重要,并有助于我们重建过去的冰川动力学。

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    Hart, Jane K.;

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  • 年度 2017
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