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The Effect of Biofilms on Turbulent Flow Over Permeable Beds
Farzan Kazemifar
, Gianluca Blois
, Marcelo Aybar
, Patricia Perez Calleja
, Robert Nerenberg
, Sumit Sinha
, Richard J. Hardy
,
Jim Best
, Gregory H. Sambrook Smith
, Kenneth T. Christensen
Earth Science and Environmental Change
Geography and Geographic Information Science
Mechanical Science and Engineering
Civil and Environmental Engineering
Center for Latin American and Caribbean Studies
Research output
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Article
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peer-review
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Keyphrases
Biofilm
100%
Turbulent Flow
100%
Permeable Bed
100%
Aquatic Environment
33%
Reynolds Stress
33%
Biofilm Detachment
33%
Porosity
16%
Two Dimensional
16%
Particle Image Velocimetry
16%
Turbulence
16%
Flow Velocity
16%
Idealized Geometry
16%
Flow Channel
16%
Wall Shear Stress
16%
Experimental Facility
16%
Low Flow
16%
Residual Effect
16%
Inner Layer
16%
Permeable Medium
16%
High Flow
16%
Flow Interaction
16%
Bed Configuration
16%
Quadrant Analysis
16%
Friction Velocity
16%
Bed Permeability
16%
Shear Friction
16%
Constant Pump
16%
Engineering
Dimensionless
100%
Turbulent Flow
100%
Reynolds Stress
100%
Two Dimensional
50%
Particle Image Velocimetry
50%
Flow Channel
50%
Outer Layer
50%
Wall Shear Stress
50%
Permeable Medium
50%
Friction Velocity
50%
Flow Velocity
50%
Porosity
50%
Material Science
Biofilms
100%
Turbulent Flow
100%
Particle Image Velocimetry
12%
Chemical Engineering
Velocity Measurement
100%