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Published in: Journal of Visualization 5/2022

06-04-2022 | Regular Paper

Monte Carlo-based a posteriori uncertainty quantification for background-oriented schlieren measurements

Authors: Abdelhafidh Moumen, Véronique de Briey, Oussama Atoui, Delphine Laboureur, Johan Gallant, Patrick Hendrick

Published in: Journal of Visualization | Issue 5/2022

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Abstract

Background-oriented schlieren (BOS) technique is a density-based optical measurement technique. BOS measurement is similar to particle image velocimetry (PIV) ones in terms of experiments design and the computation of the displacements. However, in the BOS technique, the reconstruction of the refractive index field involves further mathematical calculations, which depend on the flow geometry, such as Poisson solver, Abel inversion, algebraic reconstruction technique, and filtered back-projection. This lengthy combination of experimental measurements, cross-correlation evaluation, and mathematical computation complicates the uncertainty quantification of the reconstructed field. In this study, we present a detailed approach for an a posteriori estimation of uncertainty when using BOS measurements to reconstruct the refractive index/density field. The proposed framework is based on the Monte Carlo simulation (MCS) method and can consider all kinds of sources of error, ranging from experimental measurements to those arising from image processing. The key features of this methodology are its capacity to handle different mathematical reconstruction procedures and the ease with which it can integrate additional sources of error. We demonstrate this method first by using synthetic images and a Poisson solver with mixed boundary conditions in a 2D domain. The accuracy of the proposed approach is assessed by comparing analytical and MCS results. Then, the modular nature of the proposed framework is experimentally demonstrated using a combination of Abel inversion and inverse gradient techniques to reconstruct a 3D axisymmetric density field around a transonic projectile in free-flight. The results are compared with computational fluid dynamics (CFD) and show high levels of agreement with only limited discrepancies, which are attributed to the space-filtering effect within cross-correlation resulting from shock waves.

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Literature
go back to reference Celik IB, Ghia U, Roache PJ, Freitas CJ (2008) Procedure for estimation and reporting of uncertainty due to discretization in cfd applications. J Fluids Eng-Trans ASME 130(7):81 Celik IB, Ghia U, Roache PJ, Freitas CJ (2008) Procedure for estimation and reporting of uncertainty due to discretization in cfd applications. J Fluids Eng-Trans ASME 130(7):81
go back to reference Coleman HW, Steele WG (2009) Experimentation, validation, and uncertainty analysis for engineers, 3rd edn. Wiley, HobokenCrossRef Coleman HW, Steele WG (2009) Experimentation, validation, and uncertainty analysis for engineers, 3rd edn. Wiley, HobokenCrossRef
go back to reference Fomin NA (1998) Speckle photography for fluid mechanics measurements. experimental fluid mechanics. Springer, BerlinMATH Fomin NA (1998) Speckle photography for fluid mechanics measurements. experimental fluid mechanics. Springer, BerlinMATH
go back to reference Gerasimov A (2014) Guidelines for setting up laminar-turbulent transition cases in ansys cfd. Int J Mech Sci 152:384 Gerasimov A (2014) Guidelines for setting up laminar-turbulent transition cases in ansys cfd. Int J Mech Sci 152:384
go back to reference Guillaume G, Beaulieu C, Braud P, David L (2018) Démarche d’estimation des incertitudes en PIV basée sur la méthode GUM. In: CFTL-16, CNRS,IRSN, Sep 2018, Dourdan, France, p 10 Guillaume G, Beaulieu C, Braud P, David L (2018) Démarche d’estimation des incertitudes en PIV basée sur la méthode GUM. In: CFTL-16, CNRS,IRSN, Sep 2018, Dourdan, France, p 10
go back to reference International Organization for Standardization (1989) ISO 2768–1, General tolerances Part 1: Tolerances for linear and angular dimensions without individual tolerance indications. Tech. rep, ISO International Organization for Standardization (1989) ISO 2768–1, General tolerances Part 1: Tolerances for linear and angular dimensions without individual tolerance indications. Tech. rep, ISO
go back to reference JCGM (2008) BIPM - guide to the expression of uncertainty in measurement (GUM). Tech. rep, JCGM JCGM (2008) BIPM - guide to the expression of uncertainty in measurement (GUM). Tech. rep, JCGM
go back to reference JCGM J, (2008) 101: 2008 evaluation of measurement data-supplement 1 to the “guide to the expression of uncertainty in measurement”-propagation of distributions using a monte carlo method. International Organisation for Standardisation, Geneva JCGM J, (2008) 101: 2008 evaluation of measurement data-supplement 1 to the “guide to the expression of uncertainty in measurement”-propagation of distributions using a monte carlo method. International Organisation for Standardisation, Geneva
go back to reference Raffel M, Willert CE, Scarano F, Kähler CJ, Wereley ST, Kompenhans J (2018) Particle image velocimetry: a practical guide, third, edition. Springer, ChamCrossRef Raffel M, Willert CE, Scarano F, Kähler CJ, Wereley ST, Kompenhans J (2018) Particle image velocimetry: a practical guide, third, edition. Springer, ChamCrossRef
go back to reference Stone JA, Zimmerman JH (2011) Engineering metrology toolbox. URL http://emtoolbox nistgov/Wavelength/Edlen asp 20:24 Stone JA, Zimmerman JH (2011) Engineering metrology toolbox. URL http://​emtoolbox nistgov/Wavelength/Edlen asp 20:24
go back to reference Vinnichenko NA, Uvarov AV, Plaksina YY (2012) Accuracy of background oriented schlieren for different background patterns and means of refraction index reconstruction. In: ISFV-15, Minsk, Belarus, p 15 Vinnichenko NA, Uvarov AV, Plaksina YY (2012) Accuracy of background oriented schlieren for different background patterns and means of refraction index reconstruction. In: ISFV-15, Minsk, Belarus, p 15
go back to reference Walters DK, Cokljat D (2008) A three-equation eddy-viscosity model for reynolds-averaged navier-stokes simulations of transitional flow. J Fluids Eng 130(12):41CrossRef Walters DK, Cokljat D (2008) A three-equation eddy-viscosity model for reynolds-averaged navier-stokes simulations of transitional flow. J Fluids Eng 130(12):41CrossRef
Metadata
Title
Monte Carlo-based a posteriori uncertainty quantification for background-oriented schlieren measurements
Authors
Abdelhafidh Moumen
Véronique de Briey
Oussama Atoui
Delphine Laboureur
Johan Gallant
Patrick Hendrick
Publication date
06-04-2022
Publisher
Springer Berlin Heidelberg
Published in
Journal of Visualization / Issue 5/2022
Print ISSN: 1343-8875
Electronic ISSN: 1875-8975
DOI
https://doi.org/10.1007/s12650-022-00838-7

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