Structural framework of the gneiss–amphibolite–pegmatite assemblage of the Lewisian Complex south of Durness, NW Highlands

IF 0.5 4区 地球科学 Q4 GEOLOGY
D. Findlay, D. Bowes
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引用次数: 0

Abstract

After a gap of more than a century new mapping has established that the structural framework of the Lewisian Complex southwards from the north coast of Scotland consists of a pattern of shallowly-plunging upright folds with southeasterly trending axial planes resulting from Palaeoproterozoic deformation of the products of Neoarchaean crust formation. The lithologies and structural features are consistent with polyphase tectonothermal deformation at depth, including crustal shortening, of a flat-lying, mantle-derived protolith assemblage that consisted mainly of acidic and some basic igneous sheet-like intrusions and the products of their metamorphism (quartzofeldspathic gneiss and amphibolite) during crust formation. The crustal shortening is represented by penetrative planar and linear fabrics that largely replace those formed earlier in the less competent gneisses. Large-scale upright northeasterly trending folds formed subsequently are both a major feature of the structural framework and a major control of the emplacement of many pegmatite intrusions. Rotation of structural units with respect to one another was associated with the extension along fold axes, the common development of boudinage structures at various scales and the local reversal of the general southeasterly direction of fold plunge to northwesterly.
西北高地德内斯南部刘易斯杂岩片麻岩-角闪岩-伟晶岩组合的构造格架
在一个多世纪的空白之后,新的测绘已经确定,从苏格兰北海岸向南的刘易斯杂岩的结构框架由浅倾直立褶皱模式组成,该褶皱具有东南走向的轴向平面,这是由新太古代地壳形成产物的古元古代变形引起的。岩性和结构特征与深度多相构造热变形一致,包括地壳缩短,这是一个平坦的地幔源原岩组合,主要由酸性和一些碱性火成片状侵入体及其在地壳形成过程中变质作用的产物(石英长石片麻岩和角闪岩)组成。地壳缩短以穿透性平面和线性组构表示,这些组构在很大程度上取代了早期在不太合格片麻岩中形成的组构。随后形成的大规模直立东北走向褶皱既是结构框架的主要特征,也是许多伟晶岩侵入体侵位的主要控制因素。结构单元相对于彼此的旋转与沿褶皱轴线的延伸、各种规模的褶皱构造的共同发展以及褶皱骤降的总体东南方向向西北方向的局部逆转有关。
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来源期刊
Scottish Journal of Geology
Scottish Journal of Geology 地学-地质学
CiteScore
1.70
自引率
0.00%
发文量
10
审稿时长
>12 weeks
期刊介绍: Although published only since 1965, the Scottish Journal of Geology has a long pedigree. It is the joint publication of the Geological Society of Glasgow and the Edinburgh Geological Society, which prior to 1965 published separate Transactions: from 1860 in the case of Glasgow and 1863 for Edinburgh. Traditionally, the Journal has acted as the focus for papers on all aspects of Scottish geology and its contiguous areas, including the surrounding seas. The publication policy has always been outward looking, with the Editors encouraging review papers and papers on broader aspects of the Earth sciences that cannot be discussed solely in terms of Scottish geology. The diverse geology of Scotland continues to provide an important natural laboratory for the study of earth sciences; many seminal studies in geology have been carried out on Scottish rocks, and over the years the results of much of this work had been published in the Journal and its predecessors. The Journal fully deserves its high reputation worldwide and intends to maintain its status in the front rank of publications in the Earth sciences.
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