Diffusion Coefficient Measurements Under Reduced Gravity Conditions by Means of the Shear Cell Technique. The Impact of Free Surfaces

Author:

Ruiz Xavier,Pallarés Jordi

Publisher

Springer Science and Business Media LLC

Subject

Applied Mathematics,General Physics and Astronomy,General Engineering,Modeling and Simulation

Reference14 articles.

1. Banish, R.M., Alexander, J.I.D., Jalbert, L.B.: Experimental confirmation of the insensitivity of mass diffusion measurements to blockages and voids along the diffusion path. Rev. Sci. Instrum. 71, 4497–4501 (2000)

2. Crank, J.: The Mathematics of Diffusion. Claredon, Oxford (1975)

3. Griesche, A., Kraatz, K.-H., Frohberg, G., Muller, H., Muller-Vogt, G., Garandet, J.P., Dusserre, P., Praizey, J.P., Mathiak, G.: The shear cells used in the AGAT facility onboard FOTON-12. In: Proceedings of the First International Symposium on Microgravity Research and Applications in Physical Sciences and Biotechnology. Sorrento, Italy. September 2000 (ESA SP-454, January 2001)

4. Kasemi, M., Barsi, S., Alexander, J.I.D., Banish, R.M.: Contamination of microgravity liquid diffusivity measurements by void-generated thermocapillary convection. J. Cryst. Growth 276, 621–634 (2005)

5. Malmejac, Y., Frohberg, G.: Mass transport by diffusion. In: Walter, H.U. (ed.) Fluid Sciences and Materials Science in Space. A European Perspective (Chapter V). Springer, New York (1987)

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