Oscillatory gas flows are commonly generated by micro- and nanoelectromechanical systems. Due to their small size and high operating frequencies, these devices often produce noncontinuum gas flows. Theoretical analysis of such flows requires solution of the unsteady Boltzmann equation, which can present a formidable challenge. In this article, we explore the applicability of the lattice Boltzmann (LB) method to such linear oscillatory noncontinuum flows; this method is derived from the linearized Boltzmann Bhatnagar-Gross-Krook (BGK) equation. We formulate four linearized LB models in the frequency domain, based on Gaussian-Hermite quadratures of different algebraic precision (AP). The performance of each model is assessed by comparison to ...
In this work, we have theoretically analyzed and numerically evaluated the accuracy of high-order la...
In this work, we have theoretically analyzed and numerically evaluated the accuracy of high-order la...
In this work, we have theoretically analyzed and numerically evaluated the accuracy of high-order la...
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...
Ability to characterize the heat transfer in flowing gases is important for a wide range of applicat...
Ability to characterize the heat transfer in flowing gases is important for a wide range of applicat...
© 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...
The lattice Boltzmann model is a novel method to simulate gaseous or liquid flows. It successfully f...
In this work, we have theoretically analyzed and numerically evaluated the accuracy of high-order la...
The lattice Boltzmann model is an innovative method to simulate gaseous or liquid flows. It successf...
Ability to characterize the heat transfer in flowing gases is important for a wide range of applicat...
In this work, we have theoretically analyzed and numerically evaluated the accuracy of high-order la...
In this work, we have theoretically analyzed and numerically evaluated the accuracy of high-order la...
In this work, we have theoretically analyzed and numerically evaluated the accuracy of high-order la...
In this work, we have theoretically analyzed and numerically evaluated the accuracy of high-order la...
In this work, we have theoretically analyzed and numerically evaluated the accuracy of high-order la...
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...
Ability to characterize the heat transfer in flowing gases is important for a wide range of applicat...
Ability to characterize the heat transfer in flowing gases is important for a wide range of applicat...
© 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...
The lattice Boltzmann model is a novel method to simulate gaseous or liquid flows. It successfully f...
In this work, we have theoretically analyzed and numerically evaluated the accuracy of high-order la...
The lattice Boltzmann model is an innovative method to simulate gaseous or liquid flows. It successf...
Ability to characterize the heat transfer in flowing gases is important for a wide range of applicat...
In this work, we have theoretically analyzed and numerically evaluated the accuracy of high-order la...
In this work, we have theoretically analyzed and numerically evaluated the accuracy of high-order la...
In this work, we have theoretically analyzed and numerically evaluated the accuracy of high-order la...
In this work, we have theoretically analyzed and numerically evaluated the accuracy of high-order la...
In this work, we have theoretically analyzed and numerically evaluated the accuracy of high-order la...