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Mobile particulate systems involve the mechanics, flow and
transport properties of mixtures of fluids and solids. These
systems are intrinsic to the rheology of emulsions and suspensions,
flocculation and aggregation, sedimentation and fluidization, flow
of granular media, nucleation and growth of small particles,
segregation, attrition and solidification processes. Its diversity
means that the area has been studied by a number of different
disciplines (e.g. chemical or civil engineering, mechanics,
hydrodynamics, geophysics, condensed matter and statistical
physics, etc.). Mobile Particulate Systems features general,
orientational lectures and advanced topics, covering state of the
art approaches to the study of suspensions, fluidized beds,
sedimentation and granular flows.
Mobile particulate systems involve the mechanics, flow and
transport properties of mixtures of fluids and solids. These
systems are intrinsic to the rheology of emulsions and suspensions,
flocculation and aggregation, sedimentation and fluidization, flow
of granular media, nucleation and growth of small particles,
segregation, attrition and solidification processes. Its diversity
means that the area has been studied by a number of different
disciplines (e.g. chemical or civil engineering, mechanics,
hydrodynamics, geophysics, condensed matter and statistical
physics, etc.). Mobile Particulate Systems features general,
orientational lectures and advanced topics, covering state of the
art approaches to the study of suspensions, fluidized beds,
sedimentation and granular flows.
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