The results of the simulations of plane Poiseuille flow of water through narrow channels are presented and compared with the analytical solutions for micropolar fluid. In the simulations performed by use the Molecular Dynamic method, physical properties of the materials and their electrostatic interactions were considered. Simulation of the flow was carried on for two different channel width and two different materials of the walls (copper and quartz).
The aim of this paper is to present a survey of the results for the flows of simple gases and liquids with substructure through narrow channels, obtained with the Direct Monte-Carlo and Molecular Dynamics Simulation methods.
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The problem of focusing a shock wave after ist reflection from a concave wall is considered experimentally (in shock tube) and numerically (employing the Direct Simulation Monte-Carlo technique). Rarefied flow conditions make it possible to clarify both the size focus and the structure of ist neighbourhood.
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