Detection of turbulent/non-turbulent interface for an axisymmetric turbulent jet: evaluation of known criteria and proposal of a new criterion
In this paper, we evaluate several criteria for the detection of turbulent/non-turbulent interface using direct numerical simulation and particle image velocimetry data of an axisymmetric turbulent jet. The possibility of identifying the interface from information available in wholefield velocity da...
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Published in | Experiments in fluids Vol. 47; no. 6; pp. 995 - 1007 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
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Berlin/Heidelberg
Springer-Verlag
01.12.2009
Springer |
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Abstract | In this paper, we evaluate several criteria for the detection of turbulent/non-turbulent interface using direct numerical simulation and particle image velocimetry data of an axisymmetric turbulent jet. The possibility of identifying the interface from information available in wholefield velocity data alone is also explored. The present results using a Concentration thresholding technique compare well against available results obtained using a similar detection criterion. It is noted that Concentration and Vorticity criteria are difficult to apply with standard PIV data and therefore a new criterion based on azimuthal vorticity and streamwise velocity—quantities available from such data, is proposed. The proposed criterion scores over previously employed criteria in terms of its simplicity of evaluation, and can possibly be applied to other flows not tested here. The instantaneous location of the interface as detected from the different criteria differs substantially. However, the conditionally averaged streamwise velocity, azimuthal vorticity, and Reynolds shear stress across the interface obtained from the new criterion, as well as from the previous criteria, agree reasonably well against available results. The present work further suggests that different criteria, even with slightly sub-optimal threshold value, can provide quantitatively similar ensemble-averaged results. |
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AbstractList | In this paper, we evaluate several criteria for the detection of turbulent/non-turbulent interface using direct numerical simulation and particle image velocimetry data of an axisymmetric turbulent jet. The possibility of identifying the interface from information available in wholefield velocity data alone is also explored. The present results using a Concentration thresholding technique compare well against available results obtained using a similar detection criterion. It is noted that Concentration and Vorticity criteria are difficult to apply with standard PIV data and therefore a new criterion based on azimuthal vorticity and streamwise velocityaquantities available from such data, is proposed. The proposed criterion scores over previously employed criteria in terms of its simplicity of evaluation, and can possibly be applied to other flows not tested here. The instantaneous location of the interface as detected from the different criteria differs substantially. However, the conditionally averaged streamwise velocity, azimuthal vorticity, and Reynolds shear stress across the interface obtained from the new criterion, as well as from the previous criteria, agree reasonably well against available results. The present work further suggests that different criteria, even with slightly sub-optimal threshold value, can provide quantitatively similar ensemble-averaged results. In this paper, we evaluate several criteria for the detection of turbulent/non-turbulent interface using direct numerical simulation and particle image velocimetry data of an axisymmetric turbulent jet. The possibility of identifying the interface from information available in wholefield velocity data alone is also explored. The present results using a Concentration thresholding technique compare well against available results obtained using a similar detection criterion. It is noted that Concentration and Vorticity criteria are difficult to apply with standard PIV data and therefore a new criterion based on azimuthal vorticity and streamwise velocity—quantities available from such data, is proposed. The proposed criterion scores over previously employed criteria in terms of its simplicity of evaluation, and can possibly be applied to other flows not tested here. The instantaneous location of the interface as detected from the different criteria differs substantially. However, the conditionally averaged streamwise velocity, azimuthal vorticity, and Reynolds shear stress across the interface obtained from the new criterion, as well as from the previous criteria, agree reasonably well against available results. The present work further suggests that different criteria, even with slightly sub-optimal threshold value, can provide quantitatively similar ensemble-averaged results. |
ArticleNumber | 995 |
Author | Boersma, B. J. Agrawal, Amit Anand, Ravi Kumar |
Author_xml | – sequence: 1 givenname: Ravi Kumar surname: Anand fullname: Anand, Ravi Kumar organization: Department of Mechanical Engineering, Indian Institute of Technology Bombay – sequence: 2 givenname: B. J. surname: Boersma fullname: Boersma, B. J. organization: Laboratory for Aero en Hydrodynamics, Delft University of Technology – sequence: 3 givenname: Amit surname: Agrawal fullname: Agrawal, Amit email: amit.agrawal@me.iitb.ac.in, amit.agrawal@iitb.ac.in organization: Department of Mechanical Engineering, Indian Institute of Technology Bombay |
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Cites_doi | 10.1115/1.1603303 10.1017/S0022112001006759 10.1017/S0022112075003084 10.1146/annurev.fl.13.010181.001023 10.1063/1.2912513 10.1016/0360-1285(82)90003-X 10.1098/rspa.1989.0004 10.1063/1.869626 10.1063/1.1694927 10.1063/1.2746037 10.1007/s00348-005-0018-4 10.1017/S0022112008000141 10.1063/1.1480831 10.1007/BF00198005 10.1007/s00348-006-0193-y 10.1063/1.1694651 10.1007/s10494-005-8051-1 10.1063/1.864090 10.1017/S0022112004009528 10.1017/S002211200600944X 10.1007/s00348-005-0991-7 10.1115/1.1568357 10.1016/S0169-5983(00)00026-5 10.1007/s00348-003-0732-8 10.1063/1.1686827 10.1103/PhysRevLett.95.174501 10.1007/s00348-002-0507-7 10.1017/CBO9780511840531 10.1007/s00348-002-0489-5 |
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Keywords | Velocity Criterion Root Mean Square Difference Vorticity Particle Image Velocimetry Direct Numerical Simulation Data analysis Turbulent flow Circular jet Digital simulation Velocity distribution Experimental study Interfaces Algorithms Criterion Probability density function Particle image velocimetry Detection Velocity measurement |
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Snippet | In this paper, we evaluate several criteria for the detection of turbulent/non-turbulent interface using direct numerical simulation and particle image... |
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SubjectTerms | Axisymmetric Computational fluid dynamics Criteria Engineering Engineering Fluid Dynamics Engineering Thermodynamics Exact sciences and technology Fluid dynamics Fluid flow Fluid- and Aerodynamics Fundamental areas of phenomenology (including applications) Heat and Mass Transfer Instrumentation for fluid dynamics Jets Physics Research Article Shear stress Turbulence Turbulent flow Turbulent flows, convection, and heat transfer Vorticity |
Title | Detection of turbulent/non-turbulent interface for an axisymmetric turbulent jet: evaluation of known criteria and proposal of a new criterion |
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