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The book presents an up-to-date review of turbulent two-phase flows
with the dispersed phase, with an emphasis on the dynamics in the
near-wall region. New insights to the flow physics are provided by
direct numerical simuation and by fine experimental techniques.
Also included are models of particle dynamics in wall-bounded
turbulent flows, and a description of particle surface interactions
including muti-layer deposition and re-suspension.
Since their first introduction in natural sciences through the work
of Einstein on Brownian motion in 1905 and further works, in
particular by Langevin, Smoluchowski and others, stochastic
processes have been used in several areas of science and
technology. For example, they have been applied in chemical
studies, or in fluid turbulence and for combustion and reactive
flows. The articles in this book provide a general and unified
framework in which stochastic processes are presented as modeling
tools for various issues in engineering, physics and chemistry,
with particular focus on fluid mechanics and notably dispersed
two-phase flows. The aim is to develop what can referred to as
stochastic modeling for a whole range of applications.
The book presents an up-to-date review of turbulent two-phase flows
with the dispersed phase, with an emphasis on the dynamics in the
near-wall region. New insights to the flow physics are provided by
direct numerical simuation and by fine experimental techniques.
Also included are models of particle dynamics in wall-bounded
turbulent flows, and a description of particle surface interactions
including muti-layer deposition and re-suspension.
Since their first introduction in natural sciences through the work
of Einstein on Brownian motion in 1905 and further works, in
particular by Langevin, Smoluchowski and others, stochastic
processes have been used in several areas of science and
technology. For example, they have been applied in chemical
studies, or in fluid turbulence and for combustion and reactive
flows. The articles in this book provide a general and unified
framework in which stochastic processes are presented as modeling
tools for various issues in engineering, physics and chemistry,
with particular focus on fluid mechanics and notably dispersed
two-phase flows. The aim is to develop what can referred to as
stochastic modeling for a whole range of applications.
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