Settling of heated particles in homogeneous turbulence
From MaRDI portal
Publication:2814961
DOI10.1017/jfm.2016.102zbMath1381.76086OpenAlexW2293106312MaRDI QIDQ2814961
Ari Frankel, Filippo Coletti, Ali Mani, Hadi Pouransari
Publication date: 23 June 2016
Published in: Journal of Fluid Mechanics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1017/jfm.2016.102
Related Items (12)
On the energy transport and heat transfer efficiency in radiatively heated particle-laden Rayleigh–Bénard convection ⋮ Wall-bounded thermal turbulent convection driven by heat-releasing point particles ⋮ Flow modulation and heat transport of radiatively heated particles settling in Rayleigh-Bénard convection ⋮ A direct comparison of particle-resolved and point-particle methods in decaying turbulence ⋮ Turbulent thermal convection driven by heated inertial particles ⋮ Spectral analysis of energy transfer in turbulent flows laden with heated particles ⋮ \texttt{HORSES3D}: a high-order discontinuous Galerkin solver for flow simulations and multi-physics applications ⋮ Bi-fidelity approximation for uncertainty quantification and sensitivity analysis of irradiated particle-laden turbulence ⋮ Accurate calculation of Stokes drag for point-particle tracking in two-way coupled flows ⋮ Settling and clustering of snow particles in atmospheric turbulence ⋮ Coherent clusters of inertial particles in homogeneous turbulence ⋮ Velocity and spatial distribution of inertial particles in a turbulent channel flow
Cites Work
- Lattice Boltzmann simulation of turbulent flow laden with finite-size particles
- A fast semi-direct method for the numerical solution of non-separable elliptic equations in irregular domains
- Settling of small particles near vortices and in turbulence
- On fluid–particle dynamics in fully developed cluster-induced turbulence
- Turbulent Dispersed Multiphase Flow
- Three-dimensional Lagrangian Voronoï analysis for clustering of particles and bubbles in turbulence
- Intermittency and inertial particle entrainment at a turbulent interface: the effect of the large-scale eddies
- Where do small, weakly inertial particles go in a turbulent flow?
- Self-similar clustering of inertial particles in homogeneous turbulence
- Experimental and numerical investigation of inertial particle clustering in isotropic turbulence
- Numerical simulation of finite Reynolds number suspension drops settling under gravity
- On the physical mechanisms of two-way coupling in particle-laden isotropic turbulence
- The settling velocity of heavy particles in an aqueous near-isotropic turbulence
- Linear forcing in numerical simulations of isotropic turbulence: Physical space implementations and convergence properties
- Dispersion and temperature statistics of inertial particles in isotropic turbulence
- The role of the turbulent scales in the settling velocity of heavy particles in homogeneous isotropic turbulence
- Direct numerical simulation of turbulence modulation by particles in 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
- P<scp>ARTICLE</scp>-T<scp>URBULENCE</scp> I<scp>NTERACTIONS IN</scp> A<scp>TMOSPHERIC</scp> C<scp>LOUDS</scp>
- Statistical mechanical description and modelling of turbulent collision of inertial particles
- Two-way interaction between solid particles and homogeneous air turbulence: particle settling rate and turbulence modification measurements
- The gravitational settling of aerosol particles in homogeneous turbulence and random flow fields
- Dynamics of homogeneous bubbly flows Part 1. Rise velocity and microstructure of the bubbles
- Effect of preferential concentration on the settling velocity of heavy particles in homogeneous isotropic turbulence
- Growth of Cloud Droplets in a Turbulent Environment
- Preferential concentration of particles by turbulence
- Effect of turbulence on the particle settling velocity in the nonlinear drag range
- Homogeneous and isotropic turbulence modulation by small heavy ($St\sim 50$) particles
- Clustering and turbulence modulation in particle-laden shear flows
- Particle–fluid interactions in grid-generated turbulence
- Localized force representations for particles sedimenting in Stokes flow
- Acceleration statistics of heavy particles in turbulence
This page was built for publication: Settling of heated particles in homogeneous turbulence