Evidence for pre-Caledonian discontinuities in the Achnashellach Culmination, Moine Thrust Zone: the importance of a pre-thrust template in influencing fold-and-thrust belt development
T. Cain, G. Leslie, S. Clarke, M. Kelly, M. Krabbendam
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引用次数: 1
Abstract
South of the Loch Maree Fault in the Northwest Highlands of Scotland, an unexplained step-wise thickening of Torridon Group strata, from c. 200–1000 m, occurs towards the Loch Maree Fault, within the trailing edges of the stacked thrust sheets of the Achnashellach Culmination in the Caledonian Moine Thrust Zone. This thickening cannot be explained readily by Caledonian thrust tectonics alone, and suggests that thrusting was superimposed upon a pre-Caledonian non-layer-cake template giving rise to a thrust-parallel thickness change of Torridon Group strata in the thrust belt. Cross-section constructions within the culmination constrain discrete abrupt thickness changes of the Torridon Group succession preserved within the Coire nan Clach and Toll Ban thrust sheets. We infer the existence of a pre-existing discontinuity in the form of either a set of pre-Caledonian faults striking parallel or sub-parallel to the long-lived Loch Maree Fault in its southwestern wall, or palaeovalleys creating locally greater thicknesses of Torridon Group sediments in the pre-thrust template. Such palaeovalleys may have been eroded along pre-existing discontinuities. In either case, these discontinuities will have contributed to generating step-wise thickness changes in preserved Torridon Group strata prior to Cambro-Ordovician overstep and then contributed to controls on the observed (lateral) variations in thrust architecture and the northwards step-wise thinning of the Achnashellach Culmination towards the Loch Maree Fault. This northern termination of the Achnashellach Culmination demonstrates the importance of the pre-thrust template in constraining the three-dimensional architecture of lateral changes within fold-and-thrust belts.
在苏格兰西北高地的Maree湖断层以南,一个无法解释的Torridon群地层从约200-1000米逐渐增厚,发生在加里东莫因逆冲带的achnashelach顶点叠置逆冲片的后缘内,朝向Maree湖断层。这种增厚不能简单地用加里东期逆冲构造来解释,表明逆冲作用叠加在前加里东期的非层状饼模板上,导致了逆冲带Torridon群地层的逆冲平行厚度变化。顶点内的剖面构造限制了Coire nan Clach和Toll Ban逆冲层内保存的Torridon群演替的离散突变厚度变化。我们推断存在一个预先存在的不连续性,其形式可能是一组前加里东期断层平行或亚平行于其西南壁上的长期存在的Maree湖断层,或者是在前逆冲模板中形成局部较大厚度的Torridon群沉积物的古山谷。这些古山谷可能是沿着先前存在的不连续面被侵蚀的。在这两种情况下,这些不连续性都有助于在寒武纪-奥陶系越阶之前形成保存的Torridon群地层的逐级厚度变化,然后有助于控制冲断构造的观测(侧向)变化和achnashelach隆起向北向Maree湖断裂的逐级减薄。阿克纳斯拉克隆起的北端表明,逆冲前构造模板在控制褶皱-冲断带内横向变化的三维构造方面具有重要意义。
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.