In present work heat transfer in particle-laden wall-bounded turbulent flows has been study with the fluid-particle one way interaction approach. Direct Numerical Simulation of the flow, combined with Lagrangian particle tracking technique has been performed to study the problem. In presented configuration small solid and dense particles carrying by fluid forces are influence by turbulent non-isothermal flow. Numerical computation was performed for various grids for Reynolds number 180, 395 and the molecular Prandtl number 1.0. The effect of particle diameter and density as well as the effect of the Reynolds and Prandtl number on the statistical quantities was examined. The flow field, spatial pattern of particle concentration and particle ...
Direct numerical simulations are conducted to characterize the fluid-particle heat transfer coeffici...
The overall objective of this doctoral thesis is to investigate how tiny particles are dispersed in ...
Heat transfer is important in many applications. For instance, due to the decrease in size of electr...
In present work heat transfer in particle-laden wall-bounded turbulent flows has been study with the...
Abstract. In present work heat transfer in particle-laden wall-bounded turbulent flows has been stud...
The temperature distribution in particle-laden turbulent flow, in a flume, was investigated both by ...
We present results of direct numerical simulation of heat transfer in turbulent particle-laden chann...
Turbulent non-isothermal fully developed channel flow with solid particles was investigated through ...
Heat transfer in multiphase flows plays an important role in many industrial applications. For insta...
We present results of direct numerical simulation of turbulence modification and heat transfer in tu...
238 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1992.A numerical study was underta...
The PHYSALIS method for resolved numerical simulation of particulate flows, recently extended to inc...
Particle transfer in the wall region of turbulent boundary layers is dominated by the coherent struc...
A novel experimental technique is introduced to study fluid-particle heat transfer in dense arrays o...
Transfer of mechanical energy between solid spherical particles and a Newtonian carrier fluid has be...
Direct numerical simulations are conducted to characterize the fluid-particle heat transfer coeffici...
The overall objective of this doctoral thesis is to investigate how tiny particles are dispersed in ...
Heat transfer is important in many applications. For instance, due to the decrease in size of electr...
In present work heat transfer in particle-laden wall-bounded turbulent flows has been study with the...
Abstract. In present work heat transfer in particle-laden wall-bounded turbulent flows has been stud...
The temperature distribution in particle-laden turbulent flow, in a flume, was investigated both by ...
We present results of direct numerical simulation of heat transfer in turbulent particle-laden chann...
Turbulent non-isothermal fully developed channel flow with solid particles was investigated through ...
Heat transfer in multiphase flows plays an important role in many industrial applications. For insta...
We present results of direct numerical simulation of turbulence modification and heat transfer in tu...
238 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1992.A numerical study was underta...
The PHYSALIS method for resolved numerical simulation of particulate flows, recently extended to inc...
Particle transfer in the wall region of turbulent boundary layers is dominated by the coherent struc...
A novel experimental technique is introduced to study fluid-particle heat transfer in dense arrays o...
Transfer of mechanical energy between solid spherical particles and a Newtonian carrier fluid has be...
Direct numerical simulations are conducted to characterize the fluid-particle heat transfer coeffici...
The overall objective of this doctoral thesis is to investigate how tiny particles are dispersed in ...
Heat transfer is important in many applications. For instance, due to the decrease in size of electr...