Title
Performance of Bedload Sediment Transport Formulas Applied to the Lower Minnesota River
Date Issued
01 July 2021
Access level
metadata only access
Resource Type
journal article
Author(s)
Merten G.H.
Groten J.T.
Ellison C.A.
Lisiecki L.U.
Publisher(s)
American Society of Civil Engineers (ASCE)
Abstract
Despite limitations in reproducing complex bedload sediment transport processes in rivers, formulas have been preferred over collection and analysis of field data due to the high cost and time-consuming nature of bedload discharge measurements. However, the performance of such formulas depends on the hydraulic and sedimentological conditions they attempt to describe. The availability of field measurements provides a unique opportunity to test bedload transport formulas to better guide formula selection. Hydraulic parameters and bedload discharge data from the Lower Minnesota River and two of its tributaries were used to evaluate nine bedload transport formulas using three different indices. The bedload data for the different sites were collected by the United States Geological Survey (USGS) from 2011 through 2014, with bed material varying from very coarse to medium sand. The formulas calculated higher bedload rates than were measured due to a combination of site-specific physical characteristics, including the presence of bed forms (dunes), and sampling uncertainties. Because of the lack of reproducibility of the tested formulas, five power functions, based on the relation between the specific unit power (independent hydraulic variable) and the USGS measured data (dependent variable), were derived as provisional equations to estimate the bedload discharge on the Lower Minnesota River and tributaries.
Volume
26
Issue
7
Language
English
OCDE Knowledge area
Geología Ingeniería mecánica Geografía física Geotecnia
Scopus EID
2-s2.0-85104979244
Source
Journal of Hydrologic Engineering
ISSN of the container
10840699
Sponsor(s)
The authors acknowledge CNPq-Brazil for their financial support to Elisa Armijos (Post-Doctoral Grant project number 405759/ 2015) and extend deep gratitude to Peter R. Wright (USGS-Wyoming-Montana Water Science Center) and Faith A. Fitzpatrick (USGS-Upper Midwest Water Science Center) for their valuable contributions to improving this article. Any use of trade, firm, or product names is for descriptive purposes only and does not imply endorsement by the US Government.
Sources of information: Directorio de Producción Científica Scopus