Validation of Two-Fluid Eulerian CFD Modeling for Microbubble Drag Reduction Across a Wide Range of Reynolds Numbers

Author:

Kunz Robert F.1,Gibeling Howard J.1,Maxey Martin R.2,Tryggvason Gretar3,Fontaine Arnold A.1,Petrie Howard L.1,Ceccio Steven L.4

Affiliation:

1. Applied Research Laboratory, Pennsylvania State University, University Park, PA 16803

2. Brown University, Providence, RI 02912

3. Worchester Polytechnic Institute, Worchester, MA 01609

4. University of Michigan, Ann Arbor, MI 48109

Abstract

An Eulerian two-fluid computational fluid dynamics model has been developed for flows with microbubble drag reduction (MBDR). This paper focuses on recent validation studies for MBDR flows across a spectrum of Reynolds numbers. Direct numerical simulations and two sets of experimental flat plate boundary layer measurements are studied. In this paper, the interfacial dynamics and other models used are first presented, followed by detailed comparisons with the validation cases. Emphasis is placed on the modeling strategies required to capture measured volume fraction, bubble size, and bubble velocity distributions, as well as skin friction drag reduction.

Publisher

ASME International

Subject

Mechanical Engineering

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4. A Simple Analytical Formulation for Microbubble Drag Reduction;Marie;PCH, PhysicoChem. Hydrodyn.

5. Microbubble Drag Reduction in Liquid Turbulent Boundary Layers;Merkle;Appl. Mech. Rev.

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