On the Relaxation of Turbulence at High Reynolds Numbers
arXiv:1407.0976 · doi:10.1103/PhysRevLett.114.034501
Abstract
Turbulent motions in a fluid relax at a certain rate once stirring has stopped. The role of the most basic parameter in fluid mechanics, the Reynolds number, in setting the relaxation rate is not generally known. This paper concerns the high-Reynolds-number limit of the process. In a classical grid-turbulence wind-tunnel experiment that both reached higher Reynolds numbers than ever before and covered a wide range of them (), we measured the relaxation rate with the unprecedented precision of about 2\%. Here is the mean speed of the flow, the forcing scale, and the kinematic viscosity of the fluid. We observed that the relaxation rate was Reynolds-number independent, which contradicts some models and supports others.
Cited by in corpus (11)
- Laws of turbulence decay from direct numerical simulations
- Experimental Study of the Bottleneck in Fully Developed Turbulence
- Structure and energy transfer in homogeneous turbulence below a free surface
- Quantum Solution of Classical Turbulence. Decaying Energy Spectrum
- Parameter study of decaying magnetohydrodynamic turbulence
- Characterization of a turbulent flow with independent variation of Mach and Reynolds numbers
- Flow Modulation by an Active Grid
- Active grid turbulence anomalies through the lens of physics informed neural networks
- Experimental investigation relating free-surface features to sub-surface turbulence
- Scaling in Decaying Turbulence at High Reynolds Numbers
- Self-regulating turbulence