Back to Search Start Over

The Functional Relationship of Sediment Transport under Various Simulated Rainfall Conditions.

Authors :
Henorman, Hanna Mariana
Tholibon, Duratul Ain
Nujid, Masyitah Md
Mokhtar, Hamizah
Rahim, Jamilah Abd
Saadon, Azlinda
Source :
Fluids; Mar2022, Vol. 7 Issue 3, p107-107, 18p
Publication Year :
2022

Abstract

Sediment removed in the detachment process is transported by overland flow. Previous experimental and field works studied that sediment transport is influenced by hydraulic properties of flow, physical properties of soil, and surface characteristics. Several equations in predicting sediment transport have been developed from previous research. The objective of this paper was to establish the selected parameters that contribute to the sediment transport capacity in overland flow conditions under different rainfall pattern conditions and to evaluate their significance. The establishment of independent variables was performed using the dimensional analysis approach that is Buckingham's π theorem. The final results obtained are a series of independent parameters; the Reynolds number ( R e) , dimensionless rainfall parameter i L ν , hydraulic characteristics Q L ν that related to the dependent parameters; and dimensionless sediment transport q s ρ v . The relationship indicates that 63.6% to 72.44% of the variance in the independent parameters is in relation to the dependent parameter. From the iteration method, the estimation of constant and regression coefficient values is presented in the form of the general formula for linear and nonlinear model equations. The linear and nonlinear model equations have the highest model accuracy of 93.1% and 81.5%, respectively. However, the nonlinear model equation has the higher discrepancy ratio of 54.9%. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
23115521
Volume :
7
Issue :
3
Database :
Complementary Index
Journal :
Fluids
Publication Type :
Academic Journal
Accession number :
156001948
Full Text :
https://doi.org/10.3390/fluids7030107