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  4. Wind-tunnel experiments of turbulent flow over a surface-mounted 2-D block in a thermally-stratified boundary layer
 
conference presentation

Wind-tunnel experiments of turbulent flow over a surface-mounted 2-D block in a thermally-stratified boundary layer

Zhang, Wei
•
Markfort, Corey  
•
Porté-Agel, Fernando  
2014
67th Annual Meeting of the APS Division of Fluid Dynamics

Turbulent flows over complex surface topography have been of great interest in the atmospheric science and wind engineering communities. The geometry of the topography, surface roughness and temperature characteristics as well as the atmospheric thermal stability play important roles in determining momentum and scalar flux distribution. Studies of turbulent flow over simplified topography models, under neutrally stratified boundary-layer conditions, have provided insights into fluid dynamics. However, atmospheric thermal stability has rarely been considered in laboratory experiments, e.g., wind-tunnel experiments. Series of wind-tunnel experiments of thermally-stratified boundary-layer flow over a surface-mounted 2-D block, in a well-controlled boundary-layer wind tunnel, will be presented. Measurements using high-resolution PIV, x-wire/cold-wire anemometry and surface heat flux sensors were conducted to quantify the turbulent flow properties, including the size of the recirculation zone, coherent vortex structures and the subsequent boundary layer recovery. Results will be shown to address thermal stability effects on momentum and scalar flux distribution in the wake, as well as dominant mechanism of turbulent kinetic energy generation and consumption.

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Type
conference presentation
Author(s)
Zhang, Wei
Markfort, Corey  
Porté-Agel, Fernando  
Date Issued

2014

Written at

OTHER

EPFL units
WIRE  
Event nameEvent placeEvent date
67th Annual Meeting of the APS Division of Fluid Dynamics

San Francisco, California, USA

23-25 November, 2014

Available on Infoscience
January 15, 2015
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/110304
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