The Pleistocene rivers of the English Channel region

The Pleistocene history of river systems that enter the English Channel from northern France and southern England is reviewed. During periods of low sea‐level (cold stages) these streams were tributaries of the Channel River. In southern England the largest, the River Solent, is an axial stream that...

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Veröffentlicht in:Journal of quaternary science 2003-03, Vol.18 (3-4), p.227-243
Hauptverfasser: Antoine, Pierre, Coutard, Jean-Pierre, Gibbard, Philip, Hallegouet, Bernard, Lautridou, Jean-Pierre, Ozouf, Jean-Claude
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Sprache:eng
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Zusammenfassung:The Pleistocene history of river systems that enter the English Channel from northern France and southern England is reviewed. During periods of low sea‐level (cold stages) these streams were tributaries of the Channel River. In southern England the largest, the River Solent, is an axial stream that has drained the Hampshire Basin from the Early Pleistocene or late Pliocene. Other streams of southern England may be of similar antiquity but their records are generally short and their sedimentary history have been destroyed, as in northern Brittany, by coastal erosion and valley deepening as a consequence of tectonic uplift. In northern France, the Seine and Somme rivers have very well developed terrace systems recording incision that began at around 1 Ma. The uplift rate, deduced from the study of these terrace systems, is of 55 to 60 m myr−1 since the end of the Early Pleistocene. Generally the facies and sedimentary structures indicate that the bulk of the deposits in these rivers accumulated in braided river environments under periglacial climates in all the area around the Channel. Evolution of the rivers reflects their responses to climatic change, local geological structure and long‐term tectonic activity. In this context the Middle Somme valley is characterised by a regular pattern in which incision occurs at the beginning of each glacial period within a general background of uplift. Nevertheless the response of the different rivers to climatic variations, uplift and sea‐level changes is complex and variable according to the different parts of the river courses. Copyright © 2003 John Wiley & Sons, Ltd.
ISSN:0267-8179
1099-1417
DOI:10.1002/jqs.762