Collective Dynamics of Particles Collective Dynamics of Particles
CISM International Centre for Mechanical Sciences

Collective Dynamics of Particles

From Viscous to Turbulent Flows

    • ‏99٫99 US$
    • ‏99٫99 US$

وصف الناشر

The book surveys the state-of-the-art methods that are currently available to model and simulate the presence of rigid particles in a fluid flow. For particles that are very small relative to the characteristic flow scales and move without interaction with other particles, effective equations of motion for particle tracking are formulated and applied (e.g. in gas-solid flows). For larger particles, for particles in liquid-solid flows and for particles that interact with each other or possibly modify the overall flow detailed model are presented. Special attention is given to the description of the approximate force coupling method (FCM) as a more general treatment for small particles, and derivations in the context of low Reynolds numbers for the particle motion as well as application at finite Reynolds numbers are provided. Other topics discussed in the book are the relation to higher resolution immersed boundary methods, possible extensions to non-spherical particles and examples ofapplications of such methods to dispersed multiphase flows.

تاريخ النشر
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٢١ فبراير
اللغة
EN
الإنجليزية
عدد الصفحات
١٣٥
الناشر
Springer International Publishing
البائع
Springer Nature B.V.
الحجم
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‫م.ب.‬
A Physical Introduction to Suspension Dynamics A Physical Introduction to Suspension Dynamics
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Particle-Laden Flow Particle-Laden Flow
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Multiphase Flow Analysis Using Population Balance Modeling Multiphase Flow Analysis Using Population Balance Modeling
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Turbulent Cascades II Turbulent Cascades II
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Gas-Particle and Granular Flow Systems Gas-Particle and Granular Flow Systems
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Multiphysics Modelling of Fluid-Particulate Systems Multiphysics Modelling of Fluid-Particulate Systems
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Fluid Mechanics for Mechanical Engineers Fluid Mechanics for Mechanical Engineers
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Direct and Large Eddy Simulation XIII Direct and Large Eddy Simulation XIII
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Vehicle Dynamics, Control and Design Vehicle Dynamics, Control and Design
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Inverse Problems for Mechanical Systems Inverse Problems for Mechanical Systems
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Management Strategies and Resilience Against NaTech Events Management Strategies and Resilience Against NaTech Events
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Interfacial Flows—The Power and Beauty of Asymptotic Methods Interfacial Flows—The Power and Beauty of Asymptotic Methods
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Tensegrity Systems Tensegrity Systems
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Model Order Reduction for Design, Analysis and Control of Nonlinear Vibratory Systems Model Order Reduction for Design, Analysis and Control of Nonlinear Vibratory Systems
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