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  4. Capabilities of large-scale particle image velocimetry to characterize shallow free-surface flows
 
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Capabilities of large-scale particle image velocimetry to characterize shallow free-surface flows

Journal
Advances in Water Resources
Journal Volume
70
Pages
160-171
Date Issued
2014
Author(s)
Muste, M.
Hauet, A.
Fujita, I.
Legout, C.
Ho, H.-C.
HAO-CHE HO  
DOI
10.1016/j.advwatres.2014.04.004
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/435956
URL
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84901975878&doi=10.1016%2fj.advwatres.2014.04.004&partnerID=40&md5=727120c747e03d3f5a4b838116aaf7da
Abstract
Irrespective of their spatial extent, free-surface shallow flows are challenging measurement environments for most instruments due to the relatively small depths and velocities typically associated with these flows. A promising candidate for enabling measurements in such conditions is Large-scale Particle Image Velocimetry (LSPIV). This technique uses a non-intrusive approach to measure two-dimensional surface velocity fields with high spatial and temporal resolutions. Although there are many publications documenting the successful use of LSPIV in various laboratory and field open-channel flow situations, its performance has not been equally substantiated for measurement in shallow flows. This paper aims at filling in this gap by demonstrating the capabilities of LSPIV to: (a) accurately evaluate complex flow patterns in shallow channel flows; and (b) estimate depth in shallow flows using exclusively LSPIV measurements. The demonstration is provided by LSPIV measurements in three shallow flow laboratory situations with flow depths ranging from 0.05 to 0.31. m. The obtained measurements illustrate the LSPIV flexibility and reliability in measuring velocities in shallow and low-velocity (near-zero) flows. Moreover, the technique is capable to evaluate and map velocity-derived quantities that are difficult to document with alternative measurement techniques (e.g. vorticity and shear stress distributions and mapping of large-scale structure in the body of water). © 2014 Elsevier Ltd.
Subjects
Free-surface flows; Image Velocimetry; Large-scale Particle Image Velocimetry; Overland flows; Shallow flows
Other Subjects
Flow visualization; Open channel flow; Stream flow; Two dimensional; Velocimeters; Velocity; Velocity measurement; Free-surface flow; Image velocimetry; Overland flow; Particle image velocimetries; Shallow flow; Measurements; free surface flow; open channel flow; overland flow; shear stress; spatial resolution; vorticity
Type
review

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