Dispersion of air bubbles in isotropic turbulence
arXiv:1801.05461 · doi:10.1103/PhysRevLett.121.054501
Abstract
Bubbles play an important role in the transport of chemicals and nutrients in many natural and industrial flows. Their dispersion is crucial to understand the mixing processes in these flows. Here we report on the dispersion of millimetric air bubbles in a homogeneous and isotropic turbulent flow with Reynolds number from to . We find that the mean squared displacement (MSD) of the bubbles far exceeds that of fluid tracers in turbulence. The MSD shows two regimes. At short times, it grows ballistically (), while at larger times, it approaches the diffusive regime where MSD . Strikingly, for the bubbles, the ballistic-to-diffusive transition occurs one decade earlier than for the fluid. We reveal that both the enhanced dispersion and the early transition to the diffusive regime can be traced back to the unsteady wake-induced-motions of the bubbles. Further, the diffusion transition for bubbles is not set by the integral time scale of the turbulence (as it is for fluid tracers and microbubbles), but instead, by a timescale of eddy-crossing of the rising bubbles. The present findings provide a Lagrangian perspective towards understanding mixing in turbulent bubbly flows.
Physical Review Letters (accepted), 6 pages, 4 figures, 1 table
References in corpus (9)
- Turbulent transport of material particles: An experimental study of finite size effects
- Acceleration of heavy and light particles in turbulence: comparison between experiments and direct numerical simulations
- Quantifying turbulence induced segregation of inertial particles
- Experimental investigation of the turbulence induced by a bubble swarm rising within an incident turbulence
- Microbubbles and microparticles are not faithful tracers of turbulent acceleration
- Turbulent pair dispersion as a ballistic cascade phenomenology
- Wake-driven dynamics of finite-sized buoyant spheres in turbulence
- Mass and moment of inertia govern the transition in the dynamics and wakes of freely rising and falling cylinders
- Propelled micro-probes in turbulence
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