4.4 Article

The origin of bimodal grain-size distribution for aeolian deposits

Journal

AEOLIAN RESEARCH
Volume 20, Issue -, Pages 80-88

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.aeolia.2015.12.001

Keywords

Aeolian deposit; Bimodal grain size distribution; Dust storm; Loess; Tarim Basin

Funding

  1. Science and Technology Planning Project of the Xinjiang Uygur Autonomous Region [201130106-1]

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Atmospheric dust deposition is a common phenomenon in arid and semi-arid regions. Bimodal grain size distribution (BGSD) (including the fine component and coarse component) of aeolian deposits has been widely reported. But the origin of this pattern is still debated. Here, we focused on the sedimentary process of modern dust deposition, and analyzed the grain size distribution of modern dust deposition, foliar dust, and aggregation of the aeolian dust collected in Cele Oasis, southern margin of Tarim Basin. The results show that BGSD also appear in a dust deposition. The content of fine components (<20 mu m size fraction) change with temporal and spatial variation. Fine component from dust storm is significant less than that from subsequent floating dust. Fine component also varies with altitude. These indicate that modern dust deposition have experienced changing aerodynamic environment and be reworked during transportation and deposition, which is likely the main cause for BGSD. The dusts from different sources once being well-mixed in airflow are hard to form multiple peaks respectively corresponding with different sources. In addition, the dust deposition would appear BGSD whether aggregation or not. Modern dust deposition is the continuation of ancient dust deposition. They both may have the same cause of formation. Therefore, the origin of BGSD should provide a theoretical thinking for reconstructing the palaeo-environmental changes with the indicator of grain size. (C) 2015 Elsevier B.V. All rights reserved.

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