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This book highlights a comprehensive description of the numerical methods in rarefied gas dynamics, which has strong applications ranging from space vehicle re-entry, micro-electromechanical systems, to shale gas extraction.
The book consists of five major parts:
Elaborates the fast spectral method to solve the Boltzmann equation Presents detailed analysis and numerical examples of multiscale simulation of rarefied gas dynamics Provides fundamental discussions of gas kinetic modeling and examples
Auteur
Dr. Lei Wu received his Ph.D. in Fluid Mechanics from the University of Strathclyde (UK) in 2013. He became a lecturer and a senior lecturer at Strathclyde in 2015 and 2018, respectively, before joining the Southern University of Science and Technology (China) in 2019. His research interest is in rarefied gas dynamics, in particular to construct efficient and accurate numerical schemes to solve the Boltzmann equation, as well as building kinetic models for polyatomic gases, with applications in high-altitude aerothermodynamics of space vehicles, MEMS, shale gas transportation, and multiscale heat transfer in crystals.
Contenu
Introduction.- Gas Kinetic Theory.- Fluid-Dynamic Equation.- Fast Spectral Method for Monatomic Gas Flow.- Fast Spectral Method for Linear Gas Flow.- Kinetic Modeling of Monatomic Gas Flow.- Kinetic Modeling of Molecular Gas Flow.- General Synthetic Iterative Scheme.- Acoustics in Rarefied Gas.- Slip and Jump Coefficients.- Accuracy of Kinetic Boundary Condition.- Porous Media Flow.- Gas Mixture.- Dense Gas Flow.- Gas Fluctuation and Light Scattering.