On sampling bias in multiphase flows: Particle image velocimetry in bubbly flows

Measuring the liquid velocity and turbulence parameters in multiphase flows is a challenging task. In general, measurements based on optical methods are hindered by the presence of the gas phase. In the present work, it is shown that this leads to a sampling bias. Here, particle image velocimetry (P...

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Bibliographic Details
Main Authors: Ziegenhein, Thomas, Lucas, Dirk
Other Authors: Helmholtz-Zentrum Dresden-Rossendorf e.V., Institute of Fluid Dynamics
Format: Others
Language:English
Published: Helmholtz-Zentrum Dresden - Rossendorf 2016
Subjects:
PIV
Online Access:http://nbn-resolving.de/urn:nbn:de:bsz:d120-qucosa-197551
http://nbn-resolving.de/urn:nbn:de:bsz:d120-qucosa-197551
http://www.qucosa.de/fileadmin/data/qucosa/documents/19755/2016_Ziegenhein%26Lucas_FLOWMEASINSTRUM_preprint.pdf
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spelling ndltd-DRESDEN-oai-qucosa.de-bsz-d120-qucosa-1975512016-04-20T03:35:39Z On sampling bias in multiphase flows: Particle image velocimetry in bubbly flows Ziegenhein, Thomas Lucas, Dirk Geschwindigkeitsmessung Stichprobenverzerrung Mehrphasenströmung Blasenströmung PIV Turbulenzmessung velocity measurement sampling bias multiphase flow bubbly flow particle image velocimetry turbulence measurement ddc:620 ddc:519 ddc:532 ddc:627 ddc:629 Geschwindigkeit Turbulenz Blasenströmung Mehrphasenströmung Particle-Image-Velocimetry Stichprobe Geschwindigkeitsmessung Messung Measuring the liquid velocity and turbulence parameters in multiphase flows is a challenging task. In general, measurements based on optical methods are hindered by the presence of the gas phase. In the present work, it is shown that this leads to a sampling bias. Here, particle image velocimetry (PIV) is used to measure the liquid velocity and turbulence in a bubble column for different gas volume flow rates. As a result, passing bubbles lead to a significant sampling bias, which is evaluated by the mean liquid velocity and Reynolds stress tensor components. To overcome the sampling bias a window averaging procedure that waits a time depending on the locally distributed velocity information (hold processor) is derived. The procedure is demonstrated for an analytical test function. The PIV results obtained with the hold processor are reasonable for all values. By using the new procedure, reliable liquid velocity measurements in bubbly flows, which are vitally needed for CFD validation and modeling, are possible. In addition, the findings are general and can be applied to other flow situations and measuring techniques. Helmholtz-Zentrum Dresden - Rossendorf Helmholtz-Zentrum Dresden-Rossendorf e.V., Institute of Fluid Dynamics 2016-04-19 doc-type:preprint application/pdf http://nbn-resolving.de/urn:nbn:de:bsz:d120-qucosa-197551 urn:nbn:de:bsz:d120-qucosa-197551 http://www.qucosa.de/fileadmin/data/qucosa/documents/19755/2016_Ziegenhein%26Lucas_FLOWMEASINSTRUM_preprint.pdf eng
collection NDLTD
language English
format Others
sources NDLTD
topic Geschwindigkeitsmessung
Stichprobenverzerrung
Mehrphasenströmung
Blasenströmung
PIV
Turbulenzmessung
velocity measurement
sampling bias
multiphase flow
bubbly flow
particle image velocimetry
turbulence measurement
ddc:620
ddc:519
ddc:532
ddc:627
ddc:629
Geschwindigkeit
Turbulenz
Blasenströmung
Mehrphasenströmung
Particle-Image-Velocimetry
Stichprobe
Geschwindigkeitsmessung
Messung
spellingShingle Geschwindigkeitsmessung
Stichprobenverzerrung
Mehrphasenströmung
Blasenströmung
PIV
Turbulenzmessung
velocity measurement
sampling bias
multiphase flow
bubbly flow
particle image velocimetry
turbulence measurement
ddc:620
ddc:519
ddc:532
ddc:627
ddc:629
Geschwindigkeit
Turbulenz
Blasenströmung
Mehrphasenströmung
Particle-Image-Velocimetry
Stichprobe
Geschwindigkeitsmessung
Messung
Ziegenhein, Thomas
Lucas, Dirk
On sampling bias in multiphase flows: Particle image velocimetry in bubbly flows
description Measuring the liquid velocity and turbulence parameters in multiphase flows is a challenging task. In general, measurements based on optical methods are hindered by the presence of the gas phase. In the present work, it is shown that this leads to a sampling bias. Here, particle image velocimetry (PIV) is used to measure the liquid velocity and turbulence in a bubble column for different gas volume flow rates. As a result, passing bubbles lead to a significant sampling bias, which is evaluated by the mean liquid velocity and Reynolds stress tensor components. To overcome the sampling bias a window averaging procedure that waits a time depending on the locally distributed velocity information (hold processor) is derived. The procedure is demonstrated for an analytical test function. The PIV results obtained with the hold processor are reasonable for all values. By using the new procedure, reliable liquid velocity measurements in bubbly flows, which are vitally needed for CFD validation and modeling, are possible. In addition, the findings are general and can be applied to other flow situations and measuring techniques.
author2 Helmholtz-Zentrum Dresden-Rossendorf e.V., Institute of Fluid Dynamics
author_facet Helmholtz-Zentrum Dresden-Rossendorf e.V., Institute of Fluid Dynamics
Ziegenhein, Thomas
Lucas, Dirk
author Ziegenhein, Thomas
Lucas, Dirk
author_sort Ziegenhein, Thomas
title On sampling bias in multiphase flows: Particle image velocimetry in bubbly flows
title_short On sampling bias in multiphase flows: Particle image velocimetry in bubbly flows
title_full On sampling bias in multiphase flows: Particle image velocimetry in bubbly flows
title_fullStr On sampling bias in multiphase flows: Particle image velocimetry in bubbly flows
title_full_unstemmed On sampling bias in multiphase flows: Particle image velocimetry in bubbly flows
title_sort on sampling bias in multiphase flows: particle image velocimetry in bubbly flows
publisher Helmholtz-Zentrum Dresden - Rossendorf
publishDate 2016
url http://nbn-resolving.de/urn:nbn:de:bsz:d120-qucosa-197551
http://nbn-resolving.de/urn:nbn:de:bsz:d120-qucosa-197551
http://www.qucosa.de/fileadmin/data/qucosa/documents/19755/2016_Ziegenhein%26Lucas_FLOWMEASINSTRUM_preprint.pdf
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