Arid
DOI10.1016/j.geomorph.2018.06.010
Last Glacial aeolian landforms and deposits in the Rhone Valley (SE France): Spatial distribution and grain-size characterization
Bosq, Mathieu1; Bertran, Pascal1,2; Degeai, Jean-Philippe3; Kreutzer, Sebastian4; Queffelec, Alain1; Moine, Olivier5; Morin, Eymeric6,7
通讯作者Bosq, Mathieu
来源期刊GEOMORPHOLOGY
ISSN0169-555X
EISSN1872-695X
出版年2018
卷号318页码:250-269
英文摘要

In the Rhone Valley, a north-south oriented Cenozoic rift in southeast France, thick Pleistocene loess deposits have been recognized since the beginning of the last century. These loess records, which are disconnected from the North European Loess Belt (NELB), are of significant interest to document the evolution of perimediterranean landscapes and environments during the Last Glacial. To overcome the poor precision of available aeolian distribution maps, aeolian deposits were mapped using the topsoil textural database provided by the Land Use and Cover Area frame Statistical Survey project (LUCAS). The grain-size distribution of aeolian sand and loess was first determined using 116 samples taken from surveyed outcrops. Then, the areas showing a similar grain-size composition were extracted from the LUCAS rasters. The resulting map reproduces the conventional maps correctly but suggests a more significant extension of loess, in better agreement with the known distribution of outcrops. The map shows that the distinctive morphology of the valley dominantly controls the distribution of aeolian deposits. The deflation-related landforms, i.e., yardangs, closed depressions (pans), and desert pavements, are widespread south of narrowings of the Rhone Valley between latitudes 44 degrees N and 45 degrees N. They indicate palaeowinds blowing from the north/northwest. Aeolian sand, loessic sand, sandy loess, and loess deposits successively spread on both sides of the Rhone River. The loess is characterized by a coarse texture (main mode around 60 mu m), strong local thickness (>5 m), limited extension, and abundant bioturbation. This preservation results from the persistence of a shrub vegetal cover during the coldest and driest phases of the Last Glacial that allowed for trapping the saltating and suspended particles close to the alluvial sources. (C) 2018 Elsevier B.V. All rights reserved.


英文关键词Aeolian deposits Cartography Grain-size distribution Last Glacial LUCAS topsoil database Yardangs
类型Article
语种英语
国家France
收录类别SCI-E
WOS记录号WOS:000442191600019
WOS关键词LOESS-PALEOSOL SEQUENCE ; MESSINIAN SALINITY CRISIS ; LATE PLEISTOCENE LOESS ; EUROPEAN SAND BELT ; DUST DEPOSITION ; PARTICLE-SIZE ; WINDPOLISHED BOULDERS ; SEDIMENT TRANSPORT ; CARPATHIAN BASIN ; EASTERN-EUROPE
WOS类目Geography, Physical ; Geosciences, Multidisciplinary
WOS研究方向Physical Geography ; Geology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/209670
作者单位1.Univ Bordeaux, UMR CNRS 5199, PACER, Batiment B8,Allee Geoffroy St Hilaire, F-33615 Pessac, France;
2.Inrap, 140 Ave Marechal Leclerc, F-33130 Begles, France;
3.Univ Montpellier III, UMR CNRS 5140, ASM, Route Mende, F-34199 Montpellier, France;
4.Univ Bordeaux Montaigne, UMR CNRS 5060, IRAMAT CRP2A, Maison Archeol, F-33607 Pessac, France;
5.Univ Paris Est Creteil Val de Marne UPEC, Univ Paris Pantheon Sorbonne 1, UMR CNRS 8591, LGP, Pl Aristide Briand, F-92195 Meudon, France;
6.Inrap, 6 Rue Jean Bertin, F-26901 Valence, France;
7.Univ Lumiere Lyon II, UMR CNRS 5600, EVS, 86 Rue Pasteur, F-69007 Lyon, France
推荐引用方式
GB/T 7714
Bosq, Mathieu,Bertran, Pascal,Degeai, Jean-Philippe,et al. Last Glacial aeolian landforms and deposits in the Rhone Valley (SE France): Spatial distribution and grain-size characterization[J],2018,318:250-269.
APA Bosq, Mathieu.,Bertran, Pascal.,Degeai, Jean-Philippe.,Kreutzer, Sebastian.,Queffelec, Alain.,...&Morin, Eymeric.(2018).Last Glacial aeolian landforms and deposits in the Rhone Valley (SE France): Spatial distribution and grain-size characterization.GEOMORPHOLOGY,318,250-269.
MLA Bosq, Mathieu,et al."Last Glacial aeolian landforms and deposits in the Rhone Valley (SE France): Spatial distribution and grain-size characterization".GEOMORPHOLOGY 318(2018):250-269.
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