Turbulent internal flow in channel and pipe geometry with a diluted second phase of inertial particles is studied numerically. Direct numerical simulations (DNS) are performed at moderate Reynolds number (Re (tau) a parts per thousand aEuro parts per thousand 200) in pipe and two channels-a smaller one similar in size to previous studies and a 3 x 3-times larger one-and Eulerian statistics pertaining to the particle concentration are evaluated. This simulation box constitutes the largest domain used for particle-laden flows so far. The resulting two-point correlations of the particle concentration show that in the smaller channel the particles organize in thin, streamwise elongated patterns which are very regular and long. The spanwise spac...
This investigation considers the effect of the Stokes number on the near-wall particle dynamics of t...
Wall-bounded turbulent dispersed multiphase flows occur in a variety of industrial, biological and e...
Deposition and resuspension mechanisms in particle-laden turbulent flows are dominated by the cohere...
We study the two main phenomenologies associated with the transport of inertial particles in turbule...
The effect of large-scale turbulent structures on the motion of heavy particles in wall-bounded turb...
The distribution of inertial particles in turbulent flows is highly non-uniform and is driven by the...
The inhomogeneity of turbulence in wall bounded flows induces the phenomenology called turbophor...
\u3cp\u3eThree-dimensional particle tracking velocimetry is applied to particle-laden turbulent pipe...
We present the results of a Direct Numerical Simulation of a particle-laden spatially developing tur...
Large eddy simulation (LES) is developed to study particle preferential concentration, in which an i...
In this work we examine first the flow field of a confined jet produced by a turbulent flow in a lon...
The problem of accurate Eulerian–Lagrangian modeling of inertial particle dispersion in large-eddy ...
Inertial particles dispersed in wall-bounded flows in pipes and channels are known to accumulate clo...
The distribution of inertial particles in turbulent flows is strongly non-homogeneous and is driven ...
The purpose of this paper is to understand the capability and consistency of large eddy simulation (...
This investigation considers the effect of the Stokes number on the near-wall particle dynamics of t...
Wall-bounded turbulent dispersed multiphase flows occur in a variety of industrial, biological and e...
Deposition and resuspension mechanisms in particle-laden turbulent flows are dominated by the cohere...
We study the two main phenomenologies associated with the transport of inertial particles in turbule...
The effect of large-scale turbulent structures on the motion of heavy particles in wall-bounded turb...
The distribution of inertial particles in turbulent flows is highly non-uniform and is driven by the...
The inhomogeneity of turbulence in wall bounded flows induces the phenomenology called turbophor...
\u3cp\u3eThree-dimensional particle tracking velocimetry is applied to particle-laden turbulent pipe...
We present the results of a Direct Numerical Simulation of a particle-laden spatially developing tur...
Large eddy simulation (LES) is developed to study particle preferential concentration, in which an i...
In this work we examine first the flow field of a confined jet produced by a turbulent flow in a lon...
The problem of accurate Eulerian–Lagrangian modeling of inertial particle dispersion in large-eddy ...
Inertial particles dispersed in wall-bounded flows in pipes and channels are known to accumulate clo...
The distribution of inertial particles in turbulent flows is strongly non-homogeneous and is driven ...
The purpose of this paper is to understand the capability and consistency of large eddy simulation (...
This investigation considers the effect of the Stokes number on the near-wall particle dynamics of t...
Wall-bounded turbulent dispersed multiphase flows occur in a variety of industrial, biological and e...
Deposition and resuspension mechanisms in particle-laden turbulent flows are dominated by the cohere...