Experimental Investigation of Erosion Characteristics of Fine-Grained Cohesive Sediments

Author:

Gounder Krishnappan BommannaORCID,Stone Mike,Granger Steven,Upadhayay Hari,Tang Qiang,Zhang Yusheng,Collins Adrian

Abstract

In this short communication, the erosion process of the fine, cohesive sediment collected from the upper River Taw in South West England was studied in a rotating annular flume located in the National Water Research Institute in Burlington, Ontario, Canada. This study is part of a research project that is underway to model the transport of fine sediment and the associated nutrients in that river system. The erosion experimental data show that the critical shear stress for erosion of the upper River Taw sediment is about 0.09 Pa and it did not depend on the age of sediment deposit. The eroded sediment was transported in a flocculated form and the agent of flocculation for the upper River Taw sediment may be due to the presence of fibrils from microorganisms and organic material in the system. The experimental data were analysed using a curve fitting approach of Krone and a mathematical model of cohesive sediment transport in rotating circular flumes developed by Krishnappan. The modelled and measured data were in good agreement. An evaluation of the physical significance of Krone’s fitting coefficients is presented. Variability of the fitting coefficients as a function of bed shear stress and age of sediment deposit indicate the key role these two factors play in the erosion process of fluvial cohesive sediment.

Funder

UK Research and Innovation

Publisher

MDPI AG

Subject

Water Science and Technology,Aquatic Science,Geography, Planning and Development,Biochemistry

Reference29 articles.

1. The relation of stream sediment surface area, grain size and composition to trace element chemistry

2. Metal Contamination in Aquatic Environments: Science and Lateral Management;Luoma,2008

3. Erodibility of cohesive sediment: The importance of sediment properties

4. The contribution of ballistic momentum flux to the erosion of cohesive beds by flowing water;Amos;J. Coast. Res.,1998

5. Effects of sediment bulk properties on erosion rates

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