Direct numerical simulation of inertial particle entrainment in a shearless mixing layer
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Publication:2907259
DOI10.1017/jfm.2012.241zbMath1246.76030OpenAlexW2150699881MaRDI QIDQ2907259
Lance R. Collins, Peter J. Ireland
Publication date: 7 September 2012
Published in: Journal of Fluid Mechanics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1017/jfm.2012.241
Direct numerical and large eddy simulation of turbulence (76F65) Turbulent transport, mixing (76F25)
Related Items (4)
Droplet dynamics and fine-scale structure in a shearless turbulent mixing layer with phase changes ⋮ Accuracy and computational efficiency of dealiasing schemes for the DNS of under resolved flows with strong gradients ⋮ Disks settling in turbulence ⋮ The effect of Reynolds number on inertial particle dynamics in isotropic turbulence. Part 2. Simulations with gravitational effects
Cites Work
- Efficient algorithm for simulating homogeneous turbulent shear flow without remeshing
- Modelling turbulent collision of bidisperse inertial particles
- Turbulent Dispersed Multiphase Flow
- On the role of gravity and shear on inertial particle accelerations in near-wall turbulence
- The evaporatively driven cloud-top mixing layer
- Entrainment and mixing of water droplets across a shearless turbulent interface with and without gravitational effects
- Intermittency and inertial particle entrainment at a turbulent interface: the effect of the large-scale eddies
- Inertial particle relative velocity statistics in homogeneous isotropic turbulence
- Equation of motion for a small rigid sphere in a nonuniform flow
- Experimental and numerical investigation of inertial particle clustering in isotropic turbulence
- A Lagrangian investigation of the small-scale features of turbulent entrainment through particle tracking and direct numerical simulation
- On the decay rate of isotropic turbulence laden with microparticles
- Effect of preferential concentration on turbulent collision rates
- Some characteristics of entrainment at a cylindrical turbulence boundary
- The settling velocity of heavy particles in an aqueous near-isotropic turbulence
- Lagrangian measurements of inertial particle accelerations in a turbulent boundary layer
- The role of the turbulent scales in the settling velocity of heavy particles in homogeneous isotropic turbulence
- A numerical study of the modulation of isotropic turbulence by suspended particles
- On the two-way interaction between homogeneous turbulence and dispersed solid particles. I: Turbulence modification
- The turbulent/non-turbulent interface bounding a far wake
- Collision statistics in an isotropic particle-laden turbulent suspension. Part 1. Direct numerical simulations
- P<scp>ARTICLE</scp>-T<scp>URBULENCE</scp> I<scp>NTERACTIONS IN</scp> A<scp>TMOSPHERIC</scp> C<scp>LOUDS</scp>
- A numerical study of the particle size distribution of an aerosol undergoing turbulent coagulation
- Statistical mechanical description and modelling of turbulent collision of inertial particles
- Turbulent Flows
- Relationship between the intrinsic radial distribution function for an isotropic field of particles and lower-dimensional measurements
- Two-way interaction between solid particles and homogeneous air turbulence: particle settling rate and turbulence modification measurements
- Direct numerical simulation and large-eddy simulation of a shear-free mixing layer
- Entrainment in a shear-free turbulent mixing layer
- The gravitational settling of aerosol particles in homogeneous turbulence and random flow fields
- Effect of preferential concentration on the settling velocity of heavy particles in homogeneous isotropic turbulence
- Small-scale aspects of flows in proximity of the turbulent/nonturbulent interface
- Preferential concentration of particles by turbulence
- Effect of turbulence on the particle settling velocity in the nonlinear drag range
- Modeling inertial particle acceleration statistics in isotropic turbulence
- Experimental study of an active grid-generated shearless mixing layer and comparisons with large-eddy simulation
- On the asymptotic behaviour of large-scale turbulence in homogeneous shear flow
- Homogeneous and isotropic turbulence modulation by small heavy ($St\sim 50$) particles
- Preferential concentration of particles in homogeneous and isotropic turbulence
- Acceleration statistics of heavy particles in turbulence
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