Restricted Euler dynamics along trajectories of small inertial particles in turbulence
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Publication:5364617
DOI10.1017/jfm.2017.112zbMath1383.76491arXiv1608.02464OpenAlexW2518889313MaRDI QIDQ5364617
Charles Meneveau, Perry L. Johnson
Publication date: 28 September 2017
Published in: Journal of Fluid Mechanics (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/1608.02464
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Cites Work
- Recent fluid deformation closure for velocity gradient tensor dynamics in turbulence: timescale effects and expansions
- Internal motion of a small element of fluid in an inviscid flow
- Equation of change for ellipsoidal drops in viscous flow
- An informal introduction to turbulence
- Velocity-gradient dynamics in turbulence: Effect of viscosity and forcing
- Orientation dynamics of small, triaxial–ellipsoidal particles in isotropic turbulence
- An inequality concerning the production of vorticity in isotropic turbulence
- Equation of motion for a small rigid sphere in a nonuniform flow
- Pressure Hessian and viscous contributions to velocity gradient statistics based on Gaussian random fields
- A diffusion model for velocity gradients in turbulence
- Lagrangian tetrad dynamics and the phenomenology of turbulence
- Effect of preferential concentration on turbulent collision rates
- Fractal clustering of inertial particles in random flows
- Turbulent pair dispersion of inertial particles
- On the measurement of vortex filament lifetime statistics in turbulence
- Study of High–Reynolds Number Isotropic Turbulence by Direct Numerical Simulation
- Lagrangian Properties of Particles in Turbulence
- Higher-order derivative correlations and the alignment of small-scale structures in isotropic numerical turbulence
- Mass transfer from small particles suspended in turbulent fluid
- Exact solution of a restricted Euler equation for the velocity gradient tensor
- A study of the evolution and characteristics of the invariants of the velocity-gradient tensor in isotropic turbulence
- Collision statistics in an isotropic particle-laden turbulent suspension. Part 1. Direct numerical simulations
- Turbulence structures of wall-bounded shear flows found using DNS data
- Statistical mechanical description and modelling of turbulent collision of inertial particles
- Topology of fine-scale motions in turbulent channel flow
- The gravitational settling of aerosol particles in homogeneous turbulence and random flow fields
- A study of the fine-scale motions of incompressible time-developing mixing layers
- A closure for Lagrangian velocity gradient evolution in turbulence using recent-deformation mapping of initially Gaussian fields
- The effect of Reynolds number on inertial particle dynamics in isotropic turbulence. Part 2. Simulations with gravitational effects
- Preferential concentration of particles by turbulence
- Quantifying microbubble clustering in turbulent flow from single-point measurements
- Experimental investigation of turbulent diffusion of slightly buoyant droplets in locally isotropic turbulence
- Modeling the pressure Hessian and viscous Laplacian in turbulence: Comparisons with direct numerical simulation and implications on velocity gradient dynamics
- Lagrangian Dynamics and Models of the Velocity Gradient Tensor in Turbulent Flows
- Acceleration statistics of heavy particles in turbulence
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