Heavy particles in incompressible flows: the large Stokes number asymptotics
From MaRDI portal
Publication:867890
DOI10.1016/j.physd.2006.10.007zbMath1176.76048OpenAlexW2127122701WikidataQ60557470 ScholiaQ60557470MaRDI QIDQ867890
Massimo Cencini, Jérémie Bec, Rafaela Hillerbrand
Publication date: 19 February 2007
Published in: Physica D (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.physd.2006.10.007
Statistical turbulence modeling (76F55) Incompressible viscous fluids (76D99) Asymptotic methods, singular perturbations applied to problems in fluid mechanics (76M45) Stochastic analysis applied to problems in fluid mechanics (76M35) Suspensions (76T20)
Related Items
Noise Prevents Collapse of Vlasov-Poisson Point Charges, The transition from ergodic to explosive behavior in a family of stochastic differential equations, Stabilization by noise of a ℂ2-valued coupled system, Stability and invariant measure asymptotics in a model for heavy particles in rough turbulent flows, Ergodic properties of a model for turbulent dispersion of inertial particles, Stochastic suspensions of heavy particles, Turbulent pair dispersion of inertial particles, Effects of bubbles, droplets or particles on heat transfer in turbulent channel flows, Geometric ergodicity of a bead-spring pair with stochastic Stokes forcing, Relative velocity of inertial particles in turbulent flows
Cites Work
- The infinite number of generalized dimensions of fractals and strange attractors
- Some probabilistic problems and methods in singular perturbations
- The Top Lyapunov Exponent for a Stochastic Flow Modeling the Upper Ocean Turbulence
- Particles and fields in fluid turbulence
- Equation of motion for a small rigid sphere in a nonuniform flow
- Lagrangian method for multiple correlations in passive scalar advection
- Effect of preferential concentration on turbulent collision rates
- Fractal clustering of inertial particles in random flows
- Intermittent distribution of heavy particles in a turbulent flow
- Clustering and collisions of heavy particles in random smooth flows
- A model for preferential concentration
- Pair dispersion and preferential concentration of particles in isotropic turbulence
- How projections affect the dimension spectrum of fractal measures
- Are the dimensions of a set and its image equal under typical smooth functions?
- P<scp>ARTICLE</scp>-T<scp>URBULENCE</scp> I<scp>NTERACTIONS IN</scp> A<scp>TMOSPHERIC</scp> C<scp>LOUDS</scp>
- White Noise Limits for Inertial Particles in a Random Field
- Ergodic theory of chaos and strange attractors
- Multifractal concentrations of inertial particles in smooth random flows
- The gravitational settling of aerosol particles in homogeneous turbulence and random flow fields
- Preferential concentration of particles by turbulence
- Modeling the outcome of drop–drop collisions in Diesel sprays
- Acceleration statistics of heavy particles in turbulence
- Small-Scale Structure of a Scalar Field Convected by Turbulence