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Adelaide Research and Scholarship
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Schools and Disciplines
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School of Social Sciences
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Geographical and Environmental Studies
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Geog & Env Studies Publications
Please use this identifier to cite or link to this item:
http://hdl.handle.net/2440/73535
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| Type: | Journal article |
| Title: | River sediments |
| Author: | Williams, Martin Anthony Joseph |
| Citation: | Philosophical Transactions of the Royal Society of London Series A - Mathematical Physical and Engineering Sciences, 2012; 370(1966):2093-2122 |
| Publisher: | Royal Soc London |
| Issue Date: | 2012 |
| ISSN: | 1364-503X |
| School/Discipline: | School of Social Sciences : Geography, Environment & Population |
Statement of Responsibility: | Martin Williams |
| Abstract: | River history is reflected in the nature of the sediments carried and deposited over time. Using examples drawn from around the world, this account illustrates how river sediments have been used to reconstruct past environmental changes at a variety of scales in time and space. Problems arising from a patchy alluvial record and from influences external to the river basin can make interpretation difficult. The Nile is treated in some detail because its history is further complicated by tectonic, volcanic and climatic events in its headwaters and by enduring human impacts. It arose soon after 30 Ma. Since that time approximately 100 000 km³ of rock have been eroded from its Ethiopian sources and deposited in the eastern Mediterranean, with minor amounts of sediment laid down along its former flood plains in Egypt and Sudan. From these fragmentary alluvial remains, a detailed history of Nile floods and droughts has been reconstructed for the last 15 kyr, and, with less detail, for the past 150 kyr, which shows strong accordance with global fluctuations in the strength of the summer monsoon, which are in turn perhaps modulated by changes in solar insolation caused by changes in the Earth's orbit and by variations in solar irradiance. |
| Keywords: | alluvial history; Nile basin; river metamorphosis; suspension load; traction load |
| Rights: | © 2012 The Royal Society |
| RMID: | 0020118363 |
| DOI: | 10.1098/rsta.2011.0504 |
| Appears in Collections: | Geog & Env Studies Publications
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| View citing articles in: | Google Scholar Scopus
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