Title of article
Size and expansion ratio analysis of micro nozzle gas flow
Author/Authors
Omer San، نويسنده , , Ilhan Bayraktar، نويسنده , , Tuba Bayraktar، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2009
Pages
10
From page
402
To page
411
Abstract
Size and expansion ratio effects on the flowfield are investigated for micro converging-diverging nozzles. Numerical computations are conducted by using two dimensional augmented Burnett equations and Navier-Stokes equations that were derived from the Boltzmann equation. The Maxwell-Smoluchowski slip boundary condition is used for adiabatic walls, and Steger-Warming flux vector splitting scheme is applied to the convective inviscid flux terms. The results from the augmented Burnett equation are compared with Navier-Stokes and Direct Simulation Monte Carlo (DSMC) results. Then, nozzle-size analysis is conducted for between 2 µm and 100 µm throat width. Influence of the Knudsen number is investigated, and temperature and Mach number variations are presented. In addition, the influence of the expansion ratio is studied with three (1.7:1, 3.4:1, and 6.8:1) different configurations. The results are compared with each other and an experimental data in the literature.
Keywords
Micro nozzle , MEMS (Micro Electro-Mechanical Systems) , Burnett equations
Journal title
International Communications in Heat and Mass Transfer
Serial Year
2009
Journal title
International Communications in Heat and Mass Transfer
Record number
1220490
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