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A Unified Computational Fluid Dynamics Framework from Rarefied to Continuum Regime

A Unified Computational Fluid Dynamics Framework from Rarefied to Continuum Regime - Elements in Aerospace Engineering

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Publisher's Synopsis

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.

About the Publisher

Cambridge University Press

Cambridge University Press dates from 1534 and is part of the University of Cambridge. We further the University's mission by disseminating knowledge in the pursuit of education, learning and research at the highest international levels of excellence.

Book information

ISBN: 9781108792486
Publisher: Cambridge University Press
Imprint: Cambridge University Press
Pub date:
DEWEY: 629.1323
DEWEY edition: 23
Language: English
Number of pages: 97
Weight: 170g
Height: 227mm
Width: 150mm
Spine width: 10mm