Arid
DOI10.1016/j.quascirev.2014.03.013
Quaternary evolution of glaciated gneiss terrains: pre-glacial weathering vs. glacial erosion
Krabbendam, Maarten; Bradwell, Tom
通讯作者Krabbendam, Maarten
来源期刊QUATERNARY SCIENCE REVIEWS
ISSN0277-3791
出版年2014
卷号95页码:20-42
英文摘要

Vast areas previously covered by Pleistocene ice sheets consist of rugged bedrock-dominated terrain of innumerable knolls and lake-filled rock basins - the ’cnoc-and-lochan’ landscape or ’landscape of areal scour’. These landscapes typically form on gneissose or granitic lithologies and are interpreted (1) either to be the result of strong and widespread glacial erosion over numerous glacial cycles; or (2) formed by stripping of a saprolitic weathering mantle from an older, deeply weathered landscape.


We analyse bedrock structure, erosional landforms and weathering remnants and within the ’cnoc-and-lochan’ gneiss terrain of a rough peneplain in NW Scotland and compare this with a geomorphologically similar gneiss terrain in a non-glacial, arid setting (Namaqualand, South Africa). We find that the topography of the gneiss landscapes in NW Scotland and Namaqualand closely follows the old bedrock-saprolite contact (weathering front). The roughness of the weathering front is caused by deep fracture zones providing a highly irregular surface area for weathering to proceed. The weathering front represents a significant change in bedrock physical properties. Glacial erosion (and aeolian erosion in Namaqualand) is an efficient way of stripping saprolite, but is far less effective in eroding hard, unweathered bedrock. Significant glacial erosion of hard gneiss probably only occurs beneath palaeo-ice streams.


We conclude that the rough topography of glaciated ’cnoc-and-lochan’ gneiss terrains is formed by a multistage process:


1) Long-term, pre-glacial chemical weathering, forming deep saprolite with an irregular weathering front;


2) Stripping of weak saprolite by glacial erosion during the first glaciation(s), resulting in a rough land surface, broadly conforming to the pre-existing weathering front (’etch surface’);


3) Further modification of exposed hard bedrock by glacial erosion. In most areas, glacial erosion is limited, but can be significant beneath palaeo-ice stream. The roughness of glaciated gneiss terrains is crucial for modelling of the glacial dynamics of present-day ice sheets. This roughness is shown here to depend on the intensity of pre-glacial weathering as well as glacial erosion during successive glaciations. (C) 2014 Natural Environment Research Council. Published by Elsevier Ltd. All rights reserved.


英文关键词Weathering Glacial erosion Shield terrain Subglacial roughness Fracture zone Saprolite Joint
类型Article
语种英语
国家Scotland
收录类别SCI-E
WOS记录号WOS:000338604200002
WOS关键词PALAEO-ICE-STREAM ; MIDDLE PLEISTOCENE TRANSITION ; FISSION-TRACK ANALYSIS ; NW SCOTLAND ; SOUTH-AFRICA ; SOUTHWESTERN AFRICA ; WEST GREENLAND ; PALEOCLIMATIC IMPLICATIONS ; FENNOSCANDIAN GLACIATION ; LANDSCAPE DEVELOPMENT
WOS类目Geography, Physical ; Geosciences, Multidisciplinary
WOS研究方向Physical Geography ; Geology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/184580
作者单位British Geol Survey, Edinburgh EH6 3LA, Midlothian, Scotland
推荐引用方式
GB/T 7714
Krabbendam, Maarten,Bradwell, Tom. Quaternary evolution of glaciated gneiss terrains: pre-glacial weathering vs. glacial erosion[J],2014,95:20-42.
APA Krabbendam, Maarten,&Bradwell, Tom.(2014).Quaternary evolution of glaciated gneiss terrains: pre-glacial weathering vs. glacial erosion.QUATERNARY SCIENCE REVIEWS,95,20-42.
MLA Krabbendam, Maarten,et al."Quaternary evolution of glaciated gneiss terrains: pre-glacial weathering vs. glacial erosion".QUATERNARY SCIENCE REVIEWS 95(2014):20-42.
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