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Some Features of the Lower Carboniferous Reef Limestones of Clitheroe, Lancashire

Published online by Cambridge University Press:  01 May 2009

Abstract

The Clitheroe Limestone of Coplow, Salt Hill, and Bellman quarries is redescribed, particularly from the point of view of the origin and structure of the reef knolls and their relation to the surrounding deposits. Coplow knoll is considered to be the exposed part of a lenticular mass of upper C1 reef limestone which originally sloped steeply east. An earth movement within the C2 zone is marked by limestone breccias and a boulder bed, but there seems no evidence of pronounced erosion. A later uplift preceded the deposition of the Worston Shales. Slickensiding in the reef limestone is briefly discussed and possible effects of compaction of the sediments are considered. Three growth stages in reef formation are postulated.

Type
Articles
Copyright
Copyright © Cambridge University Press 1950

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References

REFERENCES

Bond, G., 1949. The Lower Carboniferous Reef Limestones of Cracoe, Yorkshire. Quart. Journ. Geol. Soc., cv, 157188.CrossRefGoogle Scholar
Bray, A., 1939. The Structure and non-calcareous residues of the Carboniferous Limestone of the Clitheroe Area. Proc. Geol. Assoc., 1, 423430.CrossRefGoogle Scholar
Dixon, E. E. L., 1921. The Geology of the South Wales Coalfield, Part XIII The Country around Pembroke and Tenby. Mem. Geol. Surv.Google Scholar
Hudson, R. G. S., and Dunnington, H. V., 1944. The Carboniferous Rocks of the Swinden Anticline, Yorkshire. Proc. Geol. Assoc., lv, 195215.CrossRefGoogle Scholar
Hudson, R. G. S., and Dunnington, H. V., 1949. The Carboniferous of the Craven Reef Belt at Malham, Yorkshire. Abs. Proc. Geol. Soc., No. 1447, 38–9.Google Scholar
Jones, O. T., 1944. The Compaction of Muddy Sediments. Quart. Journ. Geol. Soc., c, 137160.CrossRefGoogle Scholar
Parkinson, D., 1926. The Faunal Succession in the Carboniferous Limestone and Bowland Shales at Clitheroe and Pendle Hill. Quart. Journ. Geol. Soc., lxxxii, 188249.CrossRefGoogle Scholar
Parkinson, D., 1935. The Geology and Topography of the Limestone Knolls in Bolland (Bowland), Lancs and Yorks. Proc. Geol. Assoc., xlvi, 97120.CrossRefGoogle Scholar
Parkinson, D., 1936. The Carboniferous Succession in the Slaidburn District, Yorkshire. Quart. Journ. Geol. Soc., xcii, 294331.CrossRefGoogle Scholar
Parkinson, D., 1943. The Origin and Structure of the Lower Viséan Reef-Knolls of the Clitheroe District, Lancashire. Quart. Journ. Geol. Soc., xcix, 155168.CrossRefGoogle Scholar
Parkinson, D., 1949. The Stratigraphy of the Dovedale Area, Derbyshire and Staffordshire. Quart. Journ. Geol. Soc., cv, 265294.CrossRefGoogle Scholar
Tiddeman, R. H., and others, 1875. The Geology of the Burnley Coalfield. Mem. Geol. Surv.Google Scholar
Tiddeman, R. H., 1892. The Theory of Knoll-Reefs. The Craven Herald, 29th January, 1892. (Quoted at length in Kendall and Wroot, The Geology of Yorkshire, Leeds, 1924, 92–6.)Google Scholar