Statistics of polymer extensions in turbulent channel flow
arXiv:1011.3766 · doi:10.1103/PhysRevE.86.056314
Abstract
We present direct numerical simulations of turbulent channel flow with passive Lagrangian polymers. To understand the polymer behavior we investigate the behavior of infinitesimal line elements and calculate the probability distribution function (PDF) of finite-time Lyapunov exponents and from them the corresponding Cramer's function for the channel flow. We study the statistics of polymer elongation for both the Oldroyd-B model (for Weissenberg number $\Wi <1$) and the FENE model. We use the location of the minima of the Cramer's function to define the Weissenberg number precisely such that we observe coil-stretch transition at $\Wi\approx1$. We find agreement with earlier analytical predictions for PDF of polymer extensions made by Balkovsky, Fouxon and Lebedev [Phys. Rev. Lett., 84, 4765 (2000).] for linear polymers (Oldroyd-B model) with $\Wi<1$ and by Chertkov [Phys. Rev. Lett., 84, 4761 (2000).] for nonlinear FENE-P model of polymers. For $\Wi>1$ (FENE model) the polymer are significantly more stretched near the wall than at the center of the channel where the flow is closer to homogenous isotropic turbulence. Furthermore near the wall the polymers show a strong tendency to orient along the stream-wise direction of the flow but near the centerline the statistics of orientation of the polymers is consistent with analogous results obtained recently in homogeneous and isotropic flows.
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References in corpus (9)
- Manifestations of Drag Reduction by Polymer Additives in Decaying, Homogeneous, Isotropic Turbulence
- Lyapunov exponents of heavy particles in turbulence
- Strong polymer-turbulence interactions in viscoelastic turbulent channel flow
- Polymers in linear shear flow: a numerical study
- Is Multiscaling an Artifact in the Stochastically Forced Burgers Equation?
- Direct numerical simulations of statistically steady, homogeneous, isotropic fluid turbulence with polymer additives
- Nonlinear elastic polymers in random flow
- Two-way coupling of FENE dumbbells with a turbulent shear flow
- Deformation of a flexible polymer in a random flow with long correlation time
Cited by in corpus (9)
- A closure for Lagrangian velocity gradient evolution in turbulence using recent deformation mapping of initially Gaussian fields
- On the Peterlin approximation for turbulent flows of polymer solutions
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- Deformation of a flexible polymer in a random flow with long correlation time
- Small scale dynamics of a shearless turbulent/non-turbulent interface in dilute polymer solutions
- Effect of internal friction on the coil-stretch transition in turbulent flows
- Aerosol deposition in mucus-lined ciliated airways
- Turbulent stretching of dumbbells with hydrodynamic interactions: an analytical study