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Uniform grain-size distribution in the active layer of a shallow, gravel-bedded, braided river (the Urumqi River, China) and implications for paleo-hydrology

Authors :
L. Guerit
L. Barrier
Y. Liu
C. Narteau
E. Lajeunesse
E. Gayer
F. Métivier
Source :
Earth Surface Dynamics, Vol 6, Pp 1011-1021 (2018)
Publication Year :
2018
Publisher :
Copernicus Publications, 2018.

Abstract

The grain-size distribution of ancient alluvial systems is commonly determined from surface samples of vertically exposed sections of gravel deposits. This method relies on the hypothesis that the grain-size distribution obtained from a vertical cross section is equivalent to that of the riverbed. Such an hypothesis implies first that the sediments are uniform in size in the river bed, and second that the sampling method implemented on a vertical section leads to a grain-size distribution equivalent to the bulk one. Here, we report a field test of this hypothesis on granulometric samples collected in an active, gravel-bedded, braided stream: the Urumqi River in China. We compare data from volumetric samples of a trench excavated in an active thread and from surface counts performed on the trench vertical faces. Based on this data set, we show that the grain-size distributions obtained from all the samples are similar and that the deposit is uniform at the scale of the river active layer, a layer extending from the surface to a depth of approximately 10 times the size of the largest clasts. As a consequence, the grid-by-number method implemented vertically leads to a grain-size distribution equivalent to the one obtained by a bulk volumetric sampling. This study thus brings support to the hypothesis that vertical surface counts provide an accurate characterization of the grain-size distribution of paleo-braided rivers.

Details

Language :
English
ISSN :
21966311 and 2196632X
Volume :
6
Database :
Directory of Open Access Journals
Journal :
Earth Surface Dynamics
Publication Type :
Academic Journal
Accession number :
edsdoj.38b3a003b68e481e8ff6ef319bb7c9b3
Document Type :
article
Full Text :
https://doi.org/10.5194/esurf-6-1011-2018