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Title
Benchmark values for the Soret, thermodiffusion and molecular diffusion coefficients of the ternary mixture tetralin+isobutylbenzene+n-dodecane with 0.8-0.1-0.1 mass fraction
Author
Bou-Ali, M. Mounir
Ahadi, A.
Alonso de Mezquia, David
Galand, Q.
Gebhardt, M.
Khlybov, O.
Köhler, W.
Larrañaga, Miren
Legros, J. C.
Lyubimova, T.
Mialdun, Aliaksandr
Ryzhkov, I.
Saghir, M. Z.
Shevtsova, Valentina
Van Vaerenbergh, S.
Research Group
Mecánica de fluidos
Other institutions
Université Libre de Bruxelles
Universität Bayreuth (Alemania)
Institute of Continuous Media Mechanics UB RAS
https://ror.org/047f8bv22
https://ror.org/05g13zd79
Version
Published version
Rights
© 2015 EDP Sciences
Access
Embargoed access
URI
https://hdl.handle.net/20.500.11984/6966
Publisher’s version
https://doi.org/10.1140/epje/i2015-15030-7
Published at
European Physical Journal E  Vol. 38: 30. April, 2015
Publisher
Springer Nature
Abstract
With the aim of providing reliable benchmark values, we have measured the Soret, thermodiffusion and molecular diffusion coefficients for the ternary mixture formed by 1,2,3,4-tetrahydronaphthalene, i ... [+]
With the aim of providing reliable benchmark values, we have measured the Soret, thermodiffusion and molecular diffusion coefficients for the ternary mixture formed by 1,2,3,4-tetrahydronaphthalene, isobutylbenzene and n-dodecane for a mass fraction of 0.8-0.1-0.1 and at a temperature of 25°C. The experimental techniques used by the six participating laboratories are Optical Digital Interferometry, Taylor Dispersion technique, Open Ended Capillary, Optical Beam Deflection, Thermogravitational technique and Sliding Symmetric Tubes technique in ground conditions and Selectable Optical Diagnostic Instrument (SODI) in microgravity conditions. The measurements obtained in the SODI installation have been analyzed independently by four laboratories. Benchmark values are proposed for the thermodiffusion and Soret coefficients and for the eigenvalues of the diffusion matrix in ground conditions, and for Soret coefficients in microgravity conditions. [-]
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