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The Alston Block

Published online by Cambridge University Press:  01 May 2009

Extract

The area covered by this paper embraces the northern end of the Pennines—the uplands of Lower Carboniferous rocks centred about Alston, together with the low ground of the Tyne-Irthing gap to the north. It is bounded on the west by the Vale of Eden. The Pennine portion is separated structurally from the regions to the north and west by the Stublick and Pennine Faults respectively. The former trends E.N.E., it has a downthrow to the north and has resulted in the preservation of the string of Coal Measures outliers which form a connecting link between the Cumberland and Northumberland coalfields. The Pennine Fault, trending S.S.E., with a throw of several thousand feet to the west, brings the New Red rocks of the Vale of Eden against the Lower Carboniferous beds of the Pennine Escarpment. These two faults meet at right angles near Castle Carrock. To the south the Pennine Fault dies out near Stainmore, and another dislocation, the Dent Fault, trending S.S.W., develops, and eventually links up with the Craven Faults which have an E.S.E. trend. These four faults, as pointed out by Professor Kendall, have the form of a reversed 3, and the region within this figure has become known generally as the Northumbrian Fault Block. Professor Marr has aptly termed the southern half of this area the “Rigid Block”. The northern half of the Northumbrian Fault Block, which will be shown to possess many characters in common with the southern half, is here called the “Aiston Block”. Its limits are defined on three sides—by the Stublick Fault on the north, the Pennine Fault on the west, and by the Stainmore depression on the south. The last thus divides the Northumbrian Fault Block into two, physiographically and structurally. The eastern boundary of the Alston Block is concealed beneath the Mesozoic rocks.

Type
Original Articles
Copyright
Copyright © Cambridge University Press 1928

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References

page 433 note 1 ProfessorKendall, P. F., and Wroot, H. E., The Geology of Yorkshire (printed for authors), 1924, p. 234.Google Scholar

page 434 note 1 Versey, H. C., “Post-Carboniferous Movements in the Northumbrian Fault BlockProc. York. Geol. Soc., New Series, vol. xxi, 1927, pt. i, pp. 123.Google Scholar

page 434 note 2 Trotter, F. M., and Hollingworth, S. E., “On the Upper Limestone Group and ‘Millstone Grit’ of North-East Cumberland,” “Sum, of Prog.” for 1926 (Mem. Geol. Surv), 1927, pp. 103–5.Google Scholar

page 434 note 3 Trotter, F. M., in “Sum, of Prog.” for 1926 (Mem. Geol. Sure), 1927, p. 51.Google Scholar

page 435 note 1 The S1 group has been called the Craighill Sandstones and the S2 group the Birdoswald Limestone Group on the new geological maps.

page 435 note 2 DrSmith, B., “On the Carboniferous Limestone Series of the Northern part of the Isle of Man,” “Sum, of Prog.” for 1926 (Mem. Geol. Surv), 1927, p. 114.Google Scholar

page 435 note 3 Earle, K. W., “The Lower Carboniferous Rocks of Cumberland,” Geol. Mag., 1922, p. 525.Google Scholar

page 435 note 4 Hollingworth, S. E., in “Sum, of Prog.” for 1925 (Mem. Geol. Surv), 1926, p. 81, fig. 6 (Croglin Section).Google Scholar

page 435 note 5 DrLee, G. W., “On the Faunal Sequence of the Carboniferous Rocks met in the Roddymoor Boring, Co. Durham,” “Sum. of Prog.” for 1923 (Mem. Geol. Surv), 1924, p. 146.Google Scholar

page 435 note 6 ProfessorGarwood, E. J., “The Lower Carboniferous Succession in the North-West of England,” Quart. Journ. Geol. Soc., vol. lxviii, 1912, p. 484.Google Scholar

page 435 note 7 Trotter, F. M., in “Sum, of Prog.” for 1926 (Mem. Geol. Surv), 1927, p. 51.Google Scholar

page 436 note 1 The Foundation of the Pennines,” Manch. Geol. Assoc. Journ., i, 1927, p. 1.Google Scholar

page 436 note 2 DrMarr, J. E., “The Geology of the Appleby District,” Proc. Geol. Assoc., vol. xx, 1907, p. 129.CrossRefGoogle Scholar

page 436 note 3 The old 1 in. map shows a faulted junction with the Trias.

page 436 note 4 The Canonbie Coalfield,” Trans. Roy. Soc. Edin., vol. xl. 1903, p. 835.Google Scholar

page 437 note 1 DrMarr, J. E., The Geology of the Lake District, Camb. Univ. Press, 1916, p. 119.Google Scholar

page 440 note 1 Tate, G., “The Basaltic Rocks of Northumberland,” Proc. Ber. Nat. Club, vol. vi, 1871, PP. 197217.Google Scholar

page 440 note 2 Topley, W., and Lebour, G. A., “On the Intrusive character of the Whin Sill of Northumberland,” Quart. Journ. Geol. Soc., vol. xxxiii, 1877, pp. 406–22.CrossRefGoogle Scholar

page 440 note 3 The Chemical and Microscopical Characters of the Whin Sill,” Quart. Journ. Geol. Soc., vol. xl, 1884, pp. 640–57.Google Scholar

page 440 note 4 ProfessorGilligan, A., The Geology of the Appleby District, Whitehead and Son, Appleby, 1926, p. 21.Google Scholar

page 440 note 5 Op. jam. cit., p. 21.

page 440 note 6 On account of the excessive rarity of the Whin pebbles in any of the Brockrams, this conclusion does not appear to be warranted.

page 443 note 1 Versey, H. C., op. cit., p. 10.Google Scholar

page 446 note 1 Turner, J. S., “The Lower Carboniferous Succession in Westmorland Pennines and the Relations of the Pennine and Dent Faults,” Proc. Geol. Assoc., vol. xxxviii, 1927, p. 371.Google Scholar

page 447 note 1 ProfessorKendall, P. F., “The Geology of the Districts around Settle and Harrogate,” Proc. Geol. Assoc., vol. xxvii, 1911, pp. 46–7.Google Scholar