This Element presents a unified computational fluid dynamics framework from rarefied to continuum regimes. The framework is based on the direct modelling of flow physics in a discretized space. The mesh size and time step are used as modelling scales in the construction of discretized governing equations. With the variation-of-cell Knudsen number, continuous modelling equations in different regimes have been obtained, and the Boltzmann and Navier-Stokes equations become two limiting equations in the kinetic and hydrodynamic scales. The unified algorithms include the discrete velocity method (DVM)-based unified gas-kinetic scheme (UGKS), the particlebased unified gas-kinetic particle method (UGKP), and the wave and particle-based unified gas-kinetic wave-particle method (UGKWP). The UGKWP is a multi-scale method with the particle for non-equilibrium transport and wave for equilibrium evolution. The particle dynamics in the rarefied regime and the hydrodynamic flow solver in the continuum regime have been unified according to the cell's Knudsen number.
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Book Details
Title
A Unified Computational Fluid Dynamics Framework from Rarefied to Continuum Regimes
Imprint
Cambridge University Press
Product Form
Paperback
Publisher
Cambridge University Press
Genre
Technology & Engineering
ISBN13
9781108792486
Book Category
Higher Education and Professional Books
BISAC Subject Heading
TEC009160
Book Subcategory
Applied Sciences and Other Technologies Books
Language
English
Dimensions
Width
5 mm
Height
228 mm
Length
151 mm
Weight
170 gr
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