Title of article :
Numerical simulation of auto-ignition induced by high-pressure hydrogen release with detailed reaction model: Fluid dynamic effect by diaphragm shape and boundary layer
Author/Authors :
Asahara، نويسنده , , Makoto and Yokoyama، نويسنده , , Akinori and Hayashi، نويسنده , , A. Koichi and Yamada، نويسنده , , Eisuke and Tsuboi، نويسنده , , Nobuyuki، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2014
Pages :
10
From page :
20378
To page :
20387
Abstract :
The effects of the diaphragm shape and boundary layer near walls on auto-ignition induced by high-pressure hydrogen release in a real size tube are numerically studied using the Navier–Stokes equations with multi-component gases. The numerical results show that there is a grid dependency that provides the optimal grid system via a comparison the theoretical boundary layer thickness. The validity of the present numerical system is confirmed by comparing the numerical and experimental precursor shock wave velocities. The initial diaphragm shape affects the hydrogen release flow structure and its auto-ignition mechanism. Two different auto-ignition styles are observed from the numerical results: one occurs near the boundary layer owing to the induction time effect and Kelvin-Helmholtz instability and another may occur near the center axis owing to the Rayleigh-Taylor instability.
Keywords :
Auto-ignition , Real-size effect , direct numerical simulation , instabilities , High-pressure hydrogen release
Journal title :
International Journal of Hydrogen Energy
Serial Year :
2014
Journal title :
International Journal of Hydrogen Energy
Record number :
1871223
Link To Document :
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