Impact of armour layer on the depth of scour hole around side-by-side bridge piers under ice-covered flow condition

In the present study, experiments were conducted in a large-scale flume to investigate the issue of local scour around side-by-side bridge piers under both ice-covered and open flow conditions. Three non-uniform sediments were used in this experimental study. Analysis of armour layer in the scour ho...

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Main Authors: Namaee Mohammad Reza, Sui Jueyi
Format: Article
Language:English
Published: Sciendo 2019-09-01
Series:Journal of Hydrology and Hydromechanics
Subjects:
Online Access:https://doi.org/10.2478/johh-2019-0010
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spelling doaj-079ad58ae03f48978eb80169b32257ec2021-09-06T19:41:40ZengSciendoJournal of Hydrology and Hydromechanics0042-790X2019-09-0167324025110.2478/johh-2019-0010johh-2019-0010Impact of armour layer on the depth of scour hole around side-by-side bridge piers under ice-covered flow conditionNamaee Mohammad Reza0Sui Jueyi1Environmental Engineering Program, University of Northern British Columbia, 3333 University Way, Prince George, BC, Canada.Environmental Engineering Program, University of Northern British Columbia, 3333 University Way, Prince George, BC, Canada.In the present study, experiments were conducted in a large-scale flume to investigate the issue of local scour around side-by-side bridge piers under both ice-covered and open flow conditions. Three non-uniform sediments were used in this experimental study. Analysis of armour layer in the scour holes around bridge piers was performed to inspect the grain size distribution curves and to study the impact of armour layer on scour depth. Assessments of grain size of deposition ridges at the downstream side of bridge piers have been conducted. Based on data collected in 108 experiments, the independent variables associated with maximum scour depth were assessed. Results indicate that the densi-metric Froude number was the most influential parameter on the maximum scour depth. With the increase in grain size of the armour layer, ice cover roughness and the densimetric Froude number, the maximum scour depth around bridge piers increases correspondingly. Equations have been developed to determine the maximum scour depth around bridge piers under both open flow and ice covered conditions.https://doi.org/10.2478/johh-2019-0010armour layerlocal scourbridge pierice covernon-uniform sanderosion of river-bed
collection DOAJ
language English
format Article
sources DOAJ
author Namaee Mohammad Reza
Sui Jueyi
spellingShingle Namaee Mohammad Reza
Sui Jueyi
Impact of armour layer on the depth of scour hole around side-by-side bridge piers under ice-covered flow condition
Journal of Hydrology and Hydromechanics
armour layer
local scour
bridge pier
ice cover
non-uniform sand
erosion of river-bed
author_facet Namaee Mohammad Reza
Sui Jueyi
author_sort Namaee Mohammad Reza
title Impact of armour layer on the depth of scour hole around side-by-side bridge piers under ice-covered flow condition
title_short Impact of armour layer on the depth of scour hole around side-by-side bridge piers under ice-covered flow condition
title_full Impact of armour layer on the depth of scour hole around side-by-side bridge piers under ice-covered flow condition
title_fullStr Impact of armour layer on the depth of scour hole around side-by-side bridge piers under ice-covered flow condition
title_full_unstemmed Impact of armour layer on the depth of scour hole around side-by-side bridge piers under ice-covered flow condition
title_sort impact of armour layer on the depth of scour hole around side-by-side bridge piers under ice-covered flow condition
publisher Sciendo
series Journal of Hydrology and Hydromechanics
issn 0042-790X
publishDate 2019-09-01
description In the present study, experiments were conducted in a large-scale flume to investigate the issue of local scour around side-by-side bridge piers under both ice-covered and open flow conditions. Three non-uniform sediments were used in this experimental study. Analysis of armour layer in the scour holes around bridge piers was performed to inspect the grain size distribution curves and to study the impact of armour layer on scour depth. Assessments of grain size of deposition ridges at the downstream side of bridge piers have been conducted. Based on data collected in 108 experiments, the independent variables associated with maximum scour depth were assessed. Results indicate that the densi-metric Froude number was the most influential parameter on the maximum scour depth. With the increase in grain size of the armour layer, ice cover roughness and the densimetric Froude number, the maximum scour depth around bridge piers increases correspondingly. Equations have been developed to determine the maximum scour depth around bridge piers under both open flow and ice covered conditions.
topic armour layer
local scour
bridge pier
ice cover
non-uniform sand
erosion of river-bed
url https://doi.org/10.2478/johh-2019-0010
work_keys_str_mv AT namaeemohammadreza impactofarmourlayeronthedepthofscourholearoundsidebysidebridgepiersundericecoveredflowcondition
AT suijueyi impactofarmourlayeronthedepthofscourholearoundsidebysidebridgepiersundericecoveredflowcondition
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