Kinetic theory provides a rigorous foundation for calculating the dynamics of gas flow at arbitrary degrees of rarefaction, with solutions of the Boltzmann equation requiring numerical methods in many cases of practical interest. Importantly, the near-continuum regime can be examined analytically using asymptotic techniques. These asymptotic analyses often assume steady flow, for which analytical slip models have been derived. Recently, developments in nanoscale fabrication have stimulated research into the study of oscillatory non-equilibrium flows, drawing into question the applicability of the steady flow assumption. In this article, we present a formal asymptotic analysis of the unsteady linearized Boltzmann–BGK equation, generalizing e...
Oscillatory gas flows are commonly generated by micro- and nanoelectromechanical systems. Due to the...
We study the flow-field generated in a one-dimensional wall-bounded gas layer due to an arbitrary sm...
We explore the scaling behavior of an unsteady flow that is generated by an oscillating body of fini...
Kinetic theory provides a rigorous foundation for calculating the dynamics of gas flow at arbitrary ...
The Boltzmann equation provides a rigorous theoretical framework to study dilute gas flows at arbitr...
© 2013 Dr. Jason NassiosClassical continuum theory provides a rigorous framework for studying a dive...
© 2018 Nicholas Zhixian LiuA wide range of flow phenomena in everyday life can be modelled accuratel...
Accurate evaluation of damping in laterally oscillating microstructures is challenging due to the co...
Accurate evaluation of damping in laterally oscillating microstructures is challenging due to the co...
© 2014 Dr. Ying Wan YapRecent developments in nano- and micro- technology have led to fabrication of...
Accurate evaluation of damping in laterally oscillating microstructures is challenging due to the co...
Oscillatory gas flows are commonly generated by micro- and nanoelectromechanical systems. Due to the...
23 pagesInternational audienceThe present paper discusses an asymptotic theory for the Boltzmann equ...
23 pagesInternational audienceThe present paper discusses an asymptotic theory for the Boltzmann equ...
Oscillatory gas flows are commonly generated by micro- and nanoelectromechanical systems. Due to the...
Oscillatory gas flows are commonly generated by micro- and nanoelectromechanical systems. Due to the...
We study the flow-field generated in a one-dimensional wall-bounded gas layer due to an arbitrary sm...
We explore the scaling behavior of an unsteady flow that is generated by an oscillating body of fini...
Kinetic theory provides a rigorous foundation for calculating the dynamics of gas flow at arbitrary ...
The Boltzmann equation provides a rigorous theoretical framework to study dilute gas flows at arbitr...
© 2013 Dr. Jason NassiosClassical continuum theory provides a rigorous framework for studying a dive...
© 2018 Nicholas Zhixian LiuA wide range of flow phenomena in everyday life can be modelled accuratel...
Accurate evaluation of damping in laterally oscillating microstructures is challenging due to the co...
Accurate evaluation of damping in laterally oscillating microstructures is challenging due to the co...
© 2014 Dr. Ying Wan YapRecent developments in nano- and micro- technology have led to fabrication of...
Accurate evaluation of damping in laterally oscillating microstructures is challenging due to the co...
Oscillatory gas flows are commonly generated by micro- and nanoelectromechanical systems. Due to the...
23 pagesInternational audienceThe present paper discusses an asymptotic theory for the Boltzmann equ...
23 pagesInternational audienceThe present paper discusses an asymptotic theory for the Boltzmann equ...
Oscillatory gas flows are commonly generated by micro- and nanoelectromechanical systems. Due to the...
Oscillatory gas flows are commonly generated by micro- and nanoelectromechanical systems. Due to the...
We study the flow-field generated in a one-dimensional wall-bounded gas layer due to an arbitrary sm...
We explore the scaling behavior of an unsteady flow that is generated by an oscillating body of fini...