Chalk-glacitectonite, an important lithology in former glaciated terrains covering chalk and limestone bedrock

Q2 Earth and Planetary Sciences Geological Survey of Denmark and Greenland Bulletin Pub Date : 2018-08-15 DOI:10.34194/geusb.v41.4333
S. Pedersen, P. Gravesen, K. Hinsby
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引用次数: 3

Abstract

A glacitectonite is defined as a brecciated sediment or a cataclastic sedimentary rock formed by glaciotectonic deformation (Pedersen 1988). The term tectonite was initially introduced by Sander (1912), mainly for tectonically brecciated metamorphic rocks in the Alps. In the classic work on cataclastic rocks, Higgins (1971) stated that the term covered all rocks with fabric displaying coordinated geometric features related to continuous flow during deformation.Therefore brecciated lithologies formed by glaciotectonic deformations can be termed tectonites. Banham (1977) suggested the prefix glaci- to clarify the relation to glacial dynamics. Furthermore, Pedersen (1988) suggested the application of the bedrock prefix. Thus, a chalk-glacitectonite is a brecciated chalk formed by shear deformation during a glacial advance over an exposed bedrock surface of chalk (Fig. 1). Hence the term describes a sedimentary rock in which the primary structures are so disturbed that they cannot be continuously traced, and a glacitectonic fabric developed as joint fractures or shear surfaces superimposed on the lithology. The significance of recognising chalk-glacitectonite from chalk and limestone bedrock is the difference in textural properties, which is fundamental in geological modelling. In areas dominated by glaciotectonic complexes, which include thrust sheets of pre-glacial sedimentary rocks, the sheets are subject to shearing and dragged along the sole of the ice during its movement over the glaciotectonic complex. Due to truncation and shear-drag, the glacitectonite forms at the base of the deformational layer in a lodgement till. From the source area, which typically is a detachment anticline, the glacitectonite thins out in the direction of transport from 1–2 m (Fig. 2) to a thin shear zone only a few centimetres thick over a distance of one to a few kilometres (Pedersen 1996). Moreover, brecciation of thrust sheets displaced by glacial thrusting occurs within glaciotectonic complexes. The deformation ranges from initially anastomosing jointing (Figs 1, 3) to brecciation with bedrock clasts in crushed bedrock matrix (Fig. 4). The tectonic breccia distributed from the décollement zone at the base to the truncating glacial unconformity at the top may additionally be termed glacitectonites. Here we describe the occurrence and identification of chalk-tectonites.
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白垩-冰川长岩是原冰川地形中重要的岩性,覆盖着白垩和灰岩基岩
冰川滑石岩被定义为角化沉积物或由冰川构造变形形成的碎裂沉积岩(Pedersen 1988)。“构造岩”一词最初是由桑德(1912)提出的,主要指阿尔卑斯山脉的构造角化变质岩。希金斯(Higgins, 1971)在关于碎裂岩的经典著作中指出,该术语涵盖了所有在变形过程中表现出与连续流动相关的协调几何特征的织物的岩石。因此,由冰川构造变形形成的角化岩性可称为构造岩。Banham(1977)建议使用前缀glaci-来澄清与冰川动力学的关系。此外,Pedersen(1988)建议应用基岩前缀。因此,白垩-冰川滑石岩是一种角化白垩,在冰川推进过程中,在白垩裸露的基岩表面上发生剪切变形而形成(图1)。因此,该术语描述的是一种沉积岩,其中的原始结构受到严重干扰,无法连续追踪,并且在岩性上形成联合断裂或剪切面形成的冰川构造结构。从白垩岩和灰岩基岩中识别白垩-冰晶岩的意义在于其结构性质的差异,这是地质建模的基础。在以冰川构造复合体为主的地区,包括冰期前沉积岩的逆冲片,这些片在冰川构造复合体上移动时,会受到剪切和沿着冰底拖动。由于截断和剪切拖曳作用,冰川覆岩形成于变形层的底部,形成了一个沉积层。从通常为拆离背斜的源区开始,沿1-2米(图2)的搬运方向,冰川长粒岩变薄,在1至几公里的距离上形成只有几厘米厚的薄剪切带(Pedersen 1996)。此外,在冰川逆冲作用下,逆冲片的角化作用发生在冰川构造复体内。变形范围从最初的吻合节理(图1、3)到基岩破碎基质中基岩碎屑的角砾岩(图4)。构造角砾岩分布于底部的变质带至顶部的截断型冰川不整合带,也可称为冰川角砾岩。本文介绍了白垩构造岩的产状和鉴定。
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来源期刊
CiteScore
2.30
自引率
0.00%
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0
审稿时长
>12 weeks
期刊介绍: GEUS Bulletin publishes geoscience research papers, monographs and map descriptions with a focus on Denmark, Greenland and the wider North Atlantic and Arctic region. We welcome submissions that fit this remit. Specifically, we publish: 1.Short articles intended as rapid communications that are of immediate interest to the international geoscience community (these include new research, datasets, methods or reviews) 2.Regular-length articles that document new research or a review of a topic of interest 3.Monographs (single volume works, by arrangement with the editorial office) 4.Maps and descriptive texts (produced by GEUS for Greenland and Denmark, by arrangement with the editorial office) GEUS Bulletin serves a broad geoscientific readership from research, industry, government agencies, NGOs and special interest groups.
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