Drag coefficient of a sphere in a non-stationary flow: new results

Author:

Jourdan G1,Houas L1,Igra O2,Estivalezes J.-L3,Devals C3,Meshkov E.E4

Affiliation:

1. Département de Mécanique Energétique, IUSTI, UMR CNRS 6595, Polytech' Marseille, Université de Provence5 rue Enrico Fermi, 13013 Marseille, France

2. Department of Mechanical Engineering, The Pearlstone Center for Aeronautical Engineering Studies, Ben Gurion UniversityBeer Sheva 84105, Israel

3. ONERA CERT DMAE2 Avenue Edouard Belin, B. P. 4025, 31055 Toulouse, Cedex 4, France

4. Russian Federal Nuclear Center, Institute of Experimental Physics607190 Sarov, Russia

Abstract

The drag coefficient of a sphere placed in a non-stationary flow is studied experimentally over a wide range of Reynolds numbers in subsonic and supersonic flows. Experiments were conducted in a shock tube where the investigated balls were suspended, far from all the tube walls, on a very thin wire taken from a spider web. During each experiment, many shadowgraph photos were taken to enable an accurate construction of the sphere's trajectory. Based on the sphere's trajectory, its drag coefficient was evaluated. It was shown that a large difference exists between the sphere drag coefficient in steady and non-steady flows. In the investigated range of Reynolds numbers, the difference exceeds 50%. Based on the obtained results, a correlation for the non-stationary drag coefficient of a sphere is given. This correlation can be used safely in simulating two-phase flows composed of small spherical particles immersed in a gaseous medium.

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

Reference18 articles.

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