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Published in: Journal of Failure Analysis and Prevention 6/2016

01-12-2016 | Tools and Techniques

Flow Motion and Dust Tracking Software for PIV and Dust PTV

Authors: R. Rossi, A. Malizia, L. A. Poggi, J.-F. Ciparisse, E. Peluso, P. Gaudio

Published in: Journal of Failure Analysis and Prevention | Issue 6/2016

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Abstract

Dust resuspension and mobilization in case of loss of vacuum accidents and loss of coolant accidents is an important safety issue for Tokamaks. The Quantum Electronics and Plasma Physics Research Group of the University of Rome Tor Vergata has produced an experimental facility, STARDUST-Upgrade, able to replicate these accidents and to obtain fluid dynamic characterization and dust mobilization information in order to validate CFD models. The authors decided to implement two non-intrusive optical methods, particle image velocimetry (PIV) and shadowgraph technique. Two software programs have been developed to compute numerical values from PIV and Shadowgraph frames, namely Flow Motion and Dust Tracking Software. Flow Motion Software has the capability to extract flow velocity field analyzing consecutive frames. Dust Tracking Software follows the path of single objects (i.e., dust particles) tracing their velocity, direction, and position over time. Two experiments have been realized for each software program in order to validate them: cigarette smoke and burning paper plume have been used for flow motion software, while tungsten dust and flour mobilization have been used for dust tracking software.

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Literature
1.
go back to reference A. Malizia, Radioactive Dust Resuspension/Mobilization Inside Tokamaks (Academic Publishers, New York, 2014) A. Malizia, Radioactive Dust Resuspension/Mobilization Inside Tokamaks (Academic Publishers, New York, 2014)
2.
go back to reference T. Pinna, L.C. Cadwaller, G. Cambi, S. Ciattaglia, S. Knipe, F. Leuterer, A. Malizia, P. Petersen, M.T. Porfiri, F. Sagot, S. Scales, J. Stober, J.C. Vallet, T. Yamanishi, Operating experiences from existing fusion facilities in view of ITER safety and reliability. Fusion Eng. Des. 85, 1410–1415 (2010). (in English) CrossRef T. Pinna, L.C. Cadwaller, G. Cambi, S. Ciattaglia, S. Knipe, F. Leuterer, A. Malizia, P. Petersen, M.T. Porfiri, F. Sagot, S. Scales, J. Stober, J.C. Vallet, T. Yamanishi, Operating experiences from existing fusion facilities in view of ITER safety and reliability. Fusion Eng. Des. 85, 1410–1415 (2010). (in English) CrossRef
3.
go back to reference A. Malizia, I. Lupelli, M. Richetta, M. T. Porfiri, C. Belleci, P. Gaudio, Experimental and numerical study of dust mobilization in high vacuum condition, in Air Pollution and Pollutants (2014), pp. 225–273 A. Malizia, I. Lupelli, M. Richetta, M. T. Porfiri, C. Belleci, P. Gaudio, Experimental and numerical study of dust mobilization in high vacuum condition, in Air Pollution and Pollutants (2014), pp. 225–273
4.
go back to reference K. Takase, T. Kunugi, Y. Seki, H. Akimoto, Thermal-hydraulic characteristics during ingress-of-coolant and loss-of-vacuum events in fusion reactors. Nucl. Fusion 40(3Y), 527 (2000)CrossRef K. Takase, T. Kunugi, Y. Seki, H. Akimoto, Thermal-hydraulic characteristics during ingress-of-coolant and loss-of-vacuum events in fusion reactors. Nucl. Fusion 40(3Y), 527 (2000)CrossRef
5.
go back to reference C. Bellecci, P. Gaudio, I. Lupelli, A. Malizia, M.T. Porfiri, R. Quaranta, M. Richetta, Loss of vacuum accident (LOVA): comparison of computational fluid dynamics (CFD) flow velocities against experimental data for the model validation. Fusion Eng. Des. 86(4–5), 330–340 (2011)CrossRef C. Bellecci, P. Gaudio, I. Lupelli, A. Malizia, M.T. Porfiri, R. Quaranta, M. Richetta, Loss of vacuum accident (LOVA): comparison of computational fluid dynamics (CFD) flow velocities against experimental data for the model validation. Fusion Eng. Des. 86(4–5), 330–340 (2011)CrossRef
6.
go back to reference C. Bellecci, P. Gaudio, I. Lupelli, A. Malizia, M. Porfiri, R. Quaranta, M. Richetta, Validation of a loss of vacuum accident (LOVA) computational fluid dynamics (CFD) model. Fusion Eng. Des. 86(9–11), 2774–2778 (2011)CrossRef C. Bellecci, P. Gaudio, I. Lupelli, A. Malizia, M. Porfiri, R. Quaranta, M. Richetta, Validation of a loss of vacuum accident (LOVA) computational fluid dynamics (CFD) model. Fusion Eng. Des. 86(9–11), 2774–2778 (2011)CrossRef
7.
go back to reference I. Lupelli, P. Gaudio, M. Gelfusa, A. Malizia, I. Belluzzo, M. Richetta, Numerical study of air jet flow during a loss of vacuum. Fusion Eng. Des. 89(9–10), 2048–2052 (2014)CrossRef I. Lupelli, P. Gaudio, M. Gelfusa, A. Malizia, I. Belluzzo, M. Richetta, Numerical study of air jet flow during a loss of vacuum. Fusion Eng. Des. 89(9–10), 2048–2052 (2014)CrossRef
8.
go back to reference J.-F. Ciparisse, A. Malizia, L. Poggi, O. Cenciarelli, M. Gelfusa, M. Carestia, D. DiGiovanni, S. Mancinelli, L. Palombi, C. Bellecci, P. Gaudio, Numerical simulations as tool to predict chemical and radiological hazardous diffusion in case of nonconventional events. Model. Simul. Eng. 2016, 2 (2016) J.-F. Ciparisse, A. Malizia, L. Poggi, O. Cenciarelli, M. Gelfusa, M. Carestia, D. DiGiovanni, S. Mancinelli, L. Palombi, C. Bellecci, P. Gaudio, Numerical simulations as tool to predict chemical and radiological hazardous diffusion in case of nonconventional events. Model. Simul. Eng. 2016, 2 (2016)
9.
go back to reference M. Benedetti, P. Gaudio, I. Lupelli, A. Malizia, M. Porfiri, M. Richetta, Large eddy simulation of loss of vacuum accident in STARDUST facility. Fusion Eng. Des. 88, 2665–2668 (2013)CrossRef M. Benedetti, P. Gaudio, I. Lupelli, A. Malizia, M. Porfiri, M. Richetta, Large eddy simulation of loss of vacuum accident in STARDUST facility. Fusion Eng. Des. 88, 2665–2668 (2013)CrossRef
10.
go back to reference P. Gaudio, A. Malizia, I. Lupelli, RNG k-modelling and mobilization experiments of loss of vacuum in small tanks for nuclear fusion safety applications. Int. J. Syst. Appl. Eng. Dev. 5(3), 287–305 (2011) P. Gaudio, A. Malizia, I. Lupelli, RNG k-modelling and mobilization experiments of loss of vacuum in small tanks for nuclear fusion safety applications. Int. J. Syst. Appl. Eng. Dev. 5(3), 287–305 (2011)
11.
go back to reference P. Gaudio, A. Malizia, I. Lupelli, Experimental and numerical analysis of dust resuspension for supporting chemical and radiological risk assessment in a nuclear fusion device, Paper presented at the 2010 international conference on Mathematical models for engineering science (2010), pp. 134–147 P. Gaudio, A. Malizia, I. Lupelli, Experimental and numerical analysis of dust resuspension for supporting chemical and radiological risk assessment in a nuclear fusion device, Paper presented at the 2010 international conference on Mathematical models for engineering science (2010), pp. 134–147
12.
go back to reference A. Malizia, I. Lupelli, M. Richetta, M. Gelfusa, C. Bellecci, P. Gaudio, Safety analysis in large volume vacuum systems like tokamak: experiments and numerical simulation to analyze vacuum ruptures consequences. Adv. Mater. Sci. Eng. 2014, 1–29 (2014)CrossRef A. Malizia, I. Lupelli, M. Richetta, M. Gelfusa, C. Bellecci, P. Gaudio, Safety analysis in large volume vacuum systems like tokamak: experiments and numerical simulation to analyze vacuum ruptures consequences. Adv. Mater. Sci. Eng. 2014, 1–29 (2014)CrossRef
13.
go back to reference J. Ciparisse, A. Malizia, L. Poggi, M. Gelfusa, A. Murari, A. Mancini, P. Gaudio, First 3D numerical simulations validated with experimental measurements during a LOVA reproduction inside the new facility STARDUST-upgrade. Fusion Eng. Des. 101, 204–208 (2014)CrossRef J. Ciparisse, A. Malizia, L. Poggi, M. Gelfusa, A. Murari, A. Mancini, P. Gaudio, First 3D numerical simulations validated with experimental measurements during a LOVA reproduction inside the new facility STARDUST-upgrade. Fusion Eng. Des. 101, 204–208 (2014)CrossRef
14.
go back to reference I. Lupelli, A. Maliza, M. Richetta, L.A. Poggi, J. Ciparisse, M. Gelfusa, P. Gaudio, Simulations and experiments to reach numerical multiphase informations for security analysis on large volume vacuum systems like tokamaks. J. Fusion Energy 34(5), 959–978 (2015)CrossRef I. Lupelli, A. Maliza, M. Richetta, L.A. Poggi, J. Ciparisse, M. Gelfusa, P. Gaudio, Simulations and experiments to reach numerical multiphase informations for security analysis on large volume vacuum systems like tokamaks. J. Fusion Energy 34(5), 959–978 (2015)CrossRef
15.
go back to reference A. Malizia, M. Gelfusa, G. Francia, M. Boccitto, M.D. Vecchio, D.D. Giovanni, M. Richetta, C. Bellecci, P. Gaudio, Design of a new experimental facility to reproduce LOVA and LOCA consequences on dust resuspension. Fusion Eng. Des. 98–99, 2191–2195 (2014) A. Malizia, M. Gelfusa, G. Francia, M. Boccitto, M.D. Vecchio, D.D. Giovanni, M. Richetta, C. Bellecci, P. Gaudio, Design of a new experimental facility to reproduce LOVA and LOCA consequences on dust resuspension. Fusion Eng. Des. 98–99, 2191–2195 (2014)
16.
go back to reference C. Bellecci, P. Gaudio, I. Lupelli, A. Malizia, M.T. Porfiri, R. Quaranta, M. Richetta, STARDUST experimental campaign and numerical simulations: influence of obstacles and temperature on dust resuspension in a vacuum vessel under LOVA. Nucl. Fusion 51(5), 053017 (2011)CrossRef C. Bellecci, P. Gaudio, I. Lupelli, A. Malizia, M.T. Porfiri, R. Quaranta, M. Richetta, STARDUST experimental campaign and numerical simulations: influence of obstacles and temperature on dust resuspension in a vacuum vessel under LOVA. Nucl. Fusion 51(5), 053017 (2011)CrossRef
17.
go back to reference C. Bellecci, P. Gaudio, I. Lupelli, A. Malizia, M. T. Porfiri, R. Quaranta, M. Richetta, Experimental mapping of velocity flow field in case of L.O.V.A. inside STARDUST facility. Paper presented at 37th eps conference on plasma physics (2010) C. Bellecci, P. Gaudio, I. Lupelli, A. Malizia, M. T. Porfiri, R. Quaranta, M. Richetta, Experimental mapping of velocity flow field in case of L.O.V.A. inside STARDUST facility. Paper presented at 37th eps conference on plasma physics (2010)
18.
go back to reference P. Gaudio, A. Malizia, M. Camplani, F. Barbato, L. Antonelli, M. Gelfusa, M.D. Vecchio, L. Salgado, C. Bellecci, M. Richetta, Shadowgraph technique applied to STARDUST facility for dust tracking: first results. Phys. Procedia 62, 97–101 (2015)CrossRef P. Gaudio, A. Malizia, M. Camplani, F. Barbato, L. Antonelli, M. Gelfusa, M.D. Vecchio, L. Salgado, C. Bellecci, M. Richetta, Shadowgraph technique applied to STARDUST facility for dust tracking: first results. Phys. Procedia 62, 97–101 (2015)CrossRef
19.
go back to reference M. Benedetti, P. Gaudio, I. Lupelli, A. Malizia, M. T. Porfiri, M. Richetta, Scaled experiment for loss of vacuum accidents in nuclear fusion devices: experimental methodology for fluid-dynamics analysis in STARDUST facility. Paper presented at 2nd international conference on fluid mechanics and heat and mass Transfer (FLUIDSHEAT’11), the 2nd international conference on theoretical and applied mechanics (TAM’11), the 4th WSEAS international conference on (UPT’11),(CUHT’11), at Corfu Island, Greece (2011) M. Benedetti, P. Gaudio, I. Lupelli, A. Malizia, M. T. Porfiri, M. Richetta, Scaled experiment for loss of vacuum accidents in nuclear fusion devices: experimental methodology for fluid-dynamics analysis in STARDUST facility. Paper presented at 2nd international conference on fluid mechanics and heat and mass Transfer (FLUIDSHEAT’11), the 2nd international conference on theoretical and applied mechanics (TAM’11), the 4th WSEAS international conference on (UPT’11),(CUHT’11), at Corfu Island, Greece (2011)
20.
go back to reference L. Poggi, A. Malizia, J. Ciparisse, M. Gelfusa, A. Murari, S. Pierdiluca, E. L. Re, P. Gaudio, Experimental campaign to test the capability of STARDUST-Upgrade diagnostics to investigate LOVA and LOCA conditions, in Proceeding of 42nd EPS Conference on Plasma Physics, 2015 L. Poggi, A. Malizia, J. Ciparisse, M. Gelfusa, A. Murari, S. Pierdiluca, E. L. Re, P. Gaudio, Experimental campaign to test the capability of STARDUST-Upgrade diagnostics to investigate LOVA and LOCA conditions, in Proceeding of 42nd EPS Conference on Plasma Physics, 2015
21.
go back to reference L. Poggi, A. Malizia, J. Ciparisse, M. Gelfusa, A. Murari, L.R.E.S. Pierdiluca, P. Gaudio, First experimental campaign to demonstrate STARDUST-upgrade facility diagnostics capability to investigate LOVA conditions. J. Fusion Energy 34(6), 1320–1330 (2015)CrossRef L. Poggi, A. Malizia, J. Ciparisse, M. Gelfusa, A. Murari, L.R.E.S. Pierdiluca, P. Gaudio, First experimental campaign to demonstrate STARDUST-upgrade facility diagnostics capability to investigate LOVA conditions. J. Fusion Energy 34(6), 1320–1330 (2015)CrossRef
22.
go back to reference C. Bellecci, P. Gaudio, I. Lupelli, A. Malizia, M. T. Porfiri, R. Quaranta, M. Richetta, Characterization of divertor influence in case of LOVA: CFD analysis of STARDUST experimental facility, in Proceedings of 36th EPS Conference on Plasma Phys. Sofia, June 29–July 3, vol. 33E (2009) C. Bellecci, P. Gaudio, I. Lupelli, A. Malizia, M. T. Porfiri, R. Quaranta, M. Richetta, Characterization of divertor influence in case of LOVA: CFD analysis of STARDUST experimental facility, in Proceedings of 36th EPS Conference on Plasma Phys. Sofia, June 29–July 3, vol. 33E (2009)
23.
go back to reference K. Takase, T. Kunugi, M. Shibata, Y. Seki, Temperature distributions in a Tokamak vacuum vessel of fusion reactor after the loss-of-vacuum events occurred. Fusion Eng. Des. 42, 83–88 (1998)CrossRef K. Takase, T. Kunugi, M. Shibata, Y. Seki, Temperature distributions in a Tokamak vacuum vessel of fusion reactor after the loss-of-vacuum events occurred. Fusion Eng. Des. 42, 83–88 (1998)CrossRef
24.
go back to reference M. Benedetti, P. Gaudio, A.M.I. Lupelli, M.T. Porfiri, M. Richetta, Influence of temperature fluctuations, measured by numerical simulations, on dust resuspension due to LOVAs. Int. J. Syst. Appl. Eng. Dev. 5(6), 718–727 (2011) M. Benedetti, P. Gaudio, A.M.I. Lupelli, M.T. Porfiri, M. Richetta, Influence of temperature fluctuations, measured by numerical simulations, on dust resuspension due to LOVAs. Int. J. Syst. Appl. Eng. Dev. 5(6), 718–727 (2011)
25.
go back to reference A. Malizia, L.A. Poggi, J.-F. Ciparisse, R. Rossi, C. Bellecci, G. Pasquale, A review of dangerous dust in fusion reactors: from its creation to its resuspension in case of LOCA and LOVA. Energies 9(8), 579 (2016)CrossRef A. Malizia, L.A. Poggi, J.-F. Ciparisse, R. Rossi, C. Bellecci, G. Pasquale, A review of dangerous dust in fusion reactors: from its creation to its resuspension in case of LOCA and LOVA. Energies 9(8), 579 (2016)CrossRef
26.
go back to reference M. Camplani, A. Malizia, M. Gelfusa, F. Barbato, L. Antonelli, L.A. Poggi, J. Ciparisse, L. Salgado, M. Richetta, P. Gaudio, Image computing techniques to extrapolate data for dust tracking in case of an experimental accident simulation in a nuclear fusion plant. Rev. Sci. Instrum. 87, 013504 (2016)CrossRef M. Camplani, A. Malizia, M. Gelfusa, F. Barbato, L. Antonelli, L.A. Poggi, J. Ciparisse, L. Salgado, M. Richetta, P. Gaudio, Image computing techniques to extrapolate data for dust tracking in case of an experimental accident simulation in a nuclear fusion plant. Rev. Sci. Instrum. 87, 013504 (2016)CrossRef
27.
go back to reference A. Malizia, M. Camplani, M. Gelfusa, I. Lupelli, M. Richetta, L. Antonelli, F. Conetta, D. Scarpellini, M. Carestia, E. Peluso, C. Bellecci, L. Salgado, P. Gaudio, Dust tracking techniques applied to the STARDUST facility: first result. Fusion Eng. Des. 89, 2098–2102 (2014)CrossRef A. Malizia, M. Camplani, M. Gelfusa, I. Lupelli, M. Richetta, L. Antonelli, F. Conetta, D. Scarpellini, M. Carestia, E. Peluso, C. Bellecci, L. Salgado, P. Gaudio, Dust tracking techniques applied to the STARDUST facility: first result. Fusion Eng. Des. 89, 2098–2102 (2014)CrossRef
28.
go back to reference A. Malizia, M. Camplani, M. Gelfusa, L. Antonelli, F. Barbato, M. Vecchio, M. Richetta, L. Salgado, C. Bellecci, P. Gaudio, Optical techniques to study the dust resuspension problem in case of LOVA: Comparison of results obtained with PIV and Shadowgraph. Paper presented at 41st EPS conference on plasma physics, berlin, Germany (2014) A. Malizia, M. Camplani, M. Gelfusa, L. Antonelli, F. Barbato, M. Vecchio, M. Richetta, L. Salgado, C. Bellecci, P. Gaudio, Optical techniques to study the dust resuspension problem in case of LOVA: Comparison of results obtained with PIV and Shadowgraph. Paper presented at 41st EPS conference on plasma physics, berlin, Germany (2014)
29.
go back to reference M.V. Otugen, D. Bivolaru, PIV study of a Mach 1.6 supersonic Jet Paper presented at VSJ-SPIE98, Yokohama, Japan (1998) M.V. Otugen, D. Bivolaru, PIV study of a Mach 1.6 supersonic Jet Paper presented at VSJ-SPIE98, Yokohama, Japan (1998)
30.
go back to reference C. Cierpka, N. A., Buchmann, J. Soria and C. J. Kahler, Ultra-High-Speed 3D Astigmatic PTV in Supersonic Underexpanded Impinging Jets, Paper presented at 17th Int Symp on Applications of Laser Techniques to Fluid Mechanics, 2014 C. Cierpka, N. A., Buchmann, J. Soria and C. J. Kahler, Ultra-High-Speed 3D Astigmatic PTV in Supersonic Underexpanded Impinging Jets, Paper presented at 17th Int Symp on Applications of Laser Techniques to Fluid Mechanics, 2014
31.
go back to reference C.G. Relf, Image acquisition and processing with LABVIEW (2004) C.G. Relf, Image acquisition and processing with LABVIEW (2004)
32.
go back to reference B.K.P. Horn, B.G. Schunck, Determining optical flow. Artificial Intelligence 17(1-3), 185–203 (1980)CrossRef B.K.P. Horn, B.G. Schunck, Determining optical flow. Artificial Intelligence 17(1-3), 185–203 (1980)CrossRef
33.
go back to reference B. D. Lucas, T. Kanade, An iterative image registration technique with an application to stereo vision. Paper presented at imaging understanding workshop (1981), pp. 121–130 B. D. Lucas, T. Kanade, An iterative image registration technique with an application to stereo vision. Paper presented at imaging understanding workshop (1981), pp. 121–130
34.
go back to reference J.H. Klote, Method of Predicting Smoke Movement in Atri with Application to Smoke Management (National Institute of Standards and Technology, Gaithersburg, 1994) J.H. Klote, Method of Predicting Smoke Movement in Atri with Application to Smoke Management (National Institute of Standards and Technology, Gaithersburg, 1994)
35.
go back to reference A. Aksenov, A. Gudzovski, E. Shilkrot, A. Zhivov, Thermal Plume above Heat Sources in Rooms with a Temperature Stratification (AIVC, Ottawa, 1998) A. Aksenov, A. Gudzovski, E. Shilkrot, A. Zhivov, Thermal Plume above Heat Sources in Rooms with a Temperature Stratification (AIVC, Ottawa, 1998)
36.
go back to reference S. Vaassen, Development of a natural convection benchmark, experimental and numerical analysis of natural convection heat transfer of a cuboid in an enclosure, Unclassified report (2002) S. Vaassen, Development of a natural convection benchmark, experimental and numerical analysis of natural convection heat transfer of a cuboid in an enclosure, Unclassified report (2002)
Metadata
Title
Flow Motion and Dust Tracking Software for PIV and Dust PTV
Authors
R. Rossi
A. Malizia
L. A. Poggi
J.-F. Ciparisse
E. Peluso
P. Gaudio
Publication date
01-12-2016
Publisher
Springer US
Published in
Journal of Failure Analysis and Prevention / Issue 6/2016
Print ISSN: 1547-7029
Electronic ISSN: 1864-1245
DOI
https://doi.org/10.1007/s11668-016-0204-0

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