Glacial Microsedimentology – a new lens to investigate Glacial Sediments – a review

IF 1.3 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY
J. Menzies
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引用次数: 2

Abstract

Glacial sediment research using thin sections began post-1945. Microsedimentology examines sediments at the microscopic level deriving insights into the processes of glacial erosion, transport, and deposition. Two issues exist (1) the difficulty by some in recognizing microstructures in thin section; and (2) the absence of quantitative data making data reproduction difficult. The latter is hard to resolve but more image capture and software methodologies are now becoming available at reasonable costs. Thin sections are two-dimensional sections of three-dimensional objects, and this must be considered when measurements, fabrics and other data are assessed. Research into the micro-aspects of glacial sediments followed a typical scientific trajectory: thin sections description with little uniformity or common ‘language’ for observed microstructures: standardization allowed comparison between different sediments; with standardization, came an open-ended classification; and with cross-comparison with multiple thin sections - a quantitative means of study needs developed. It has become apparent that the basic principles of structural geology had to be applied. Thus, micromorphology has subsumed into a microsedimentological study of glacial sediments where stress parameters, structural fabrics and the mapping of deformation structures and contextual integration allows an understanding of how these sediments have been formed. Examples of the development stages of glacial micromorphology / sedimentology are presented here as well as discussion of future avenues of study. In addition, multiple thin sections are used to illustrate the many aspects of glacial micromorphology and the parameters necessary to understand glacial sedimentology and the processes of glacial sedimentation.
冰川微沉积学——研究冰川沉积物的新视角
冰川沉积物的薄片研究开始于1945年后。微沉积学在微观水平上研究沉积物,从而深入了解冰川侵蚀、运输和沉积的过程。存在两个问题:(1)薄切片显微结构的识别存在困难;(2)缺乏定量数据,使得数据再现困难。后者很难解决,但更多的图像捕获和软件方法现在以合理的成本变得可用。薄片是三维物体的二维截面,在测量、织物和其他数据评估时必须考虑到这一点。对冰川沉积物微观方面的研究遵循一个典型的科学轨迹:薄片描述几乎没有一致性或观察到的微观结构的共同“语言”;标准化允许不同沉积物之间的比较;标准化带来了开放式分类;通过与多个薄片的交叉比较,需要开发一种定量的研究方法。很明显,必须应用构造地质学的基本原理。因此,微形态学已被纳入冰川沉积物的微沉积学研究,其中应力参数,结构结构和变形结构的映射以及上下文整合可以理解这些沉积物是如何形成的。本文介绍了冰川微形态/沉积学的发展阶段,并讨论了未来的研究方向。此外,还使用多个薄片来说明冰川微形态的许多方面以及了解冰川沉积学和冰川沉积过程所需的参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Canadian Journal of Earth Sciences
Canadian Journal of Earth Sciences 地学-地球科学综合
CiteScore
2.80
自引率
7.10%
发文量
66
审稿时长
6-12 weeks
期刊介绍: The Canadian Journal of Earth Sciences reports current research in climate and environmental geoscience; geoarchaeology and forensic geoscience; geochronology and geochemistry; geophysics; GIS and geomatics; hydrology; mineralogy and petrology; mining and engineering geology; ore deposits and economic geology; paleontology, petroleum geology and basin analysis; physical geography and Quaternary geoscience; planetary geoscience; sedimentology and stratigraphy; soil sciences; and structural geology and tectonics. It also publishes special issues that focus on information and studies about a particular segment of earth sciences.
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