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  4. Turbulent Flows within Random Arrays of Rigid and Emergent Cylinders with Varying Distribution
 
research article

Turbulent Flows within Random Arrays of Rigid and Emergent Cylinders with Varying Distribution

Ricardo, Ana M.  
•
Franca, Mario J.  
•
Ferreira, Rui M. L.
2016
Journal Of Hydraulic Engineering

The spatial distribution of emergent vegetation in rivers is frequently nonuniform. Here, spatial nonuniformity is simulated in the laboratory by varying longitudinally the stem areal number density (m). Time- and space-averaged flow variables, corresponding to different values and gradients of m and different stem Reynolds numbers, are calculated from instantaneous velocity maps obtained with particle image velocimetry (PIV). Results show that Reynolds stresses are completely determined by the local spatially averaged number of stems per unit area; they are not sensitive to local spatial gradients of m. These variables seem to adjust locally to the spatial variations of the stem distribution. Contrarily, the spatial distribution of the time-averaged flow is influenced not only by the local value of m but also by its spatial gradients. Form-induced stresses express this influence. They reveal a subsistence of flow complexity generated by the upstream stem distribution as a form of spatial memory. Thus, the effect of spatial gradients of m is always in the direction of increasing form-induced stresses although at different rates depending on the signal of the former.

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Type
research article
DOI
10.1061/(Asce)Hy.1943-7900.0001151
Web of Science ID

WOS:000383150800009

Author(s)
Ricardo, Ana M.  
Franca, Mario J.  
Ferreira, Rui M. L.
Date Issued

2016

Publisher

Asce-Amer Soc Civil Engineers

Published in
Journal Of Hydraulic Engineering
Volume

142

Issue

9

Article Number

04016022

Subjects

Nonuniform distribution of stems

•

Particle image velocimetry (PIV)

•

Momentum equation

•

Spatial variability

Note

[1137]

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
PL-LCH  
Available on Infoscience
October 18, 2016
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/130247
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