Middle Pleistocene Sedimentary Sequences in East Anglia (United Kingdom)

1975 ◽  
pp. 225-258
2021 ◽  
pp. 1-17
Author(s):  
Jef Vandenberghe ◽  
Xun Yang ◽  
Xianyan Wang ◽  
Shejiang Wang ◽  
Huayu Lu

Abstract This paper describes an assemblage of diverse floodplain facies of reworked loess (facies b, c) in a Middle Pleistocene monsoonal setting of the Hanzhong Basin, central China. The vertical and lateral sedimentary sequences show changing energy conditions. Apart from the highest energy in the channel facies (facies a), a relatively high energy floodplain environment (facies b) prevailed in waterlogged conditions, with small, laterally migrating (sub)channels. Facies b generally interfingers with aggrading horizontal sheets of overbank deposits in alluvial pools and swamps in a floodplain with much lower energy (facies c), in which phases of stability (soil formation) occasionally interrupted overbank deposition. Reworked loess forms the main part of the floodplain deposits. The paleosols are considered to have been formed under low hydrodynamic conditions in an interglacial environment. These interglacial conditions follow the commonly assumed glacial conditions of channel facies a. The sedimentary successions in the floodplain show a recurrent composition and cyclicity between wet and dry floodplain sedimentation terminated by stability with soil formation. The cyclic rhythm of stacked high- and low-energy floodplain sediments is attributed to varied intensity of different hydrodynamic flooding events that may have been due to changing monsoonal rainfall or simple intrinsic fluvial behavior.


1902 ◽  
Vol 9 (9) ◽  
pp. 385-388 ◽  
Author(s):  
E. T. Newton

The history of this gigantic rodent began to be written in 1809, when M. Gothelf Fischer described a skull from a sandy deposit on the borders of the Sea of Azof, to which he gave the name of Trogontherium. Since then, at varying intervals, to the present time, new chapters have been added to this history by both Continental and British workers, describing specimens of a more or less fragmentary character which have from time to time been discovered. The English specimens have been chiefly obtained from the ‘Cromer Forest Bed,’ that rich and remarkable series of beds occupying a position in time between the Crags and the Glacial deposits of East Anglia. The ‘Forest Bed’ specimens were first made known by Sir Charles Lyell in 1840, but were more fully described by Sir R. Owen in 1846 and referred to Fischer's Trogontherium Cuvieri. It will not be necessary at this time to refer specifically to each of the additions to our knowledge of this animal or to detail the varying opinions as to affinities and nomenclature, as these particulars will be found in the Memoirs of the Geological Survey of the United Kingdom. Although most of the British specimens of Trogontherium Cuvieri have been found in the ‘Cromer Forest Bed’ a few examples have been met with in the Norwich and Weybourn Crags. The smaller species, which has been called T. minus, was obtained from the nodule bed below the Red Crag of Felixstowe, and an incisor tooth from the Norwich Crag was referred to the same species.


Boreas ◽  
2008 ◽  
Vol 31 (4) ◽  
pp. 345-355 ◽  
Author(s):  
JONATHAN R. LEE ◽  
JAMES ROSE ◽  
JAMES B. RIDING ◽  
BRIAN S. P. MOORLOCK ◽  
RICHARD J. O. HAMBLIN

2019 ◽  
Vol 85 ◽  
pp. 61-81 ◽  
Author(s):  
Mark White ◽  
Nick Ashton ◽  
David Bridgland

A better understood chronological framework for the Middle Pleistocene of Britain has enabled archaeologists to detect a number of temporally-restricted assemblage-types, based not on ‘culture historical’ schemes of typological progression but on independent dating methods and secure stratigraphic frameworks, especially river-terrace sequences. This includes a consistent pattern in the timing of Clactonian and Levalloisian industries, as well as a number of handaxe assemblage types that belong to different interglacial cycles. In other words, Derek Roe’s hunch that the apparent lack of coherent ‘cultural’ patterning was due to an inaccurate and inadequate chronological framework was correct. Some variation in handaxe shape is culturally significant. Here we focus on twisted ovate handaxes, which we have previously argued to belong predominantly to MIS 11. Recent discoveries have enabled us to refine our correlations. Twisted ovate assemblages are found in different regions of Britain in different substages of MIS 11 (East Anglia in MIS 11c and south of the Thames in MIS 11a), the Thames, and the MIS 11b cold interval separating the two occurrences. These patterns have the potential to reveal much about hominin settlement patterns, behaviour, and social networks during the Middle Pleistocene.


Boreas ◽  
2002 ◽  
Vol 31 (4) ◽  
pp. 345-355 ◽  
Author(s):  
Jonathan R. Lee ◽  
James Rose ◽  
James B. Riding ◽  
Brian S. P. Moorlock ◽  
Richard J. O. Hamblin

Boreas ◽  
2011 ◽  
Vol 41 (3) ◽  
pp. 319-336 ◽  
Author(s):  
Philip L. Gibbard ◽  
Richard G. West ◽  
Steve Boreham ◽  
Christopher J. Rolfe

2007 ◽  
Vol 51 (3) ◽  
pp. 337-346 ◽  
Author(s):  
D. R. Bridgland ◽  
P. L. Gibbard

ABSTRACT The principal river of the London basin, the Thames, has experienced a number of course changes during the Quaternary. Some, at least, of these are known to result directly from glaciation. In the early Quaternary the river flowed to the north of London across East Anglia to the north coast of Norfolk. By the early Middle Pleistocene it had changed its course to flow eastwards near the Suffolk - Essex border into the southern North Sea. The Thames valley to the north of London was blocked by ice during the Anglian/Elsterian glaciation, causing a series of glacial lakes to form. Overflow of these lakes brought the river into its modern valley through London. It is thought that this valley already existed by the Anglian in the form of a tributary of the north-flowing River Medway, which joined the old Thames valley near Clacton. Also during the Anglian/Elsterian glaciation. British and continental ice masses are thought to have joined in the northern part of the North Sea basin, causing a large lake to form between the east coast of England and the Netherlands. It is widely believed that the overflow from this lake caused the first breach in the Weald-Artois Ridge, bringing about the formation of the Strait of Dover. Prior to the glaciation the Thames, in common with rivers from the continent (including the Rhine and Meuse), flowed into the North Sea Basin. It seems that, after the lake overflow, these rivers together drained southwards into the English Channel. Whether this southern drainage route was adopted during all later periods of low sea level remains to be determined, but it seems certain that this was the case during the last glacial.


Boreas ◽  
2018 ◽  
Vol 47 (4) ◽  
pp. 1118-1143 ◽  
Author(s):  
Karolina Leszczynska ◽  
Steve Boreham ◽  
Philip L. Gibbard

2021 ◽  
Vol 269 ◽  
pp. 107113
Author(s):  
Simon G. Lewis ◽  
Nick Ashton ◽  
Rob Davis ◽  
Marcus Hatch ◽  
Peter G. Hoare ◽  
...  

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