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Abstract

This paper demonstrates experimental and numerical study on spontaneous ignition of H-2-N-2 mixtures during high-pressure release into air through the tubes of various diameters and lengths. The mixtures included 5% and 10% (vol.) N-2 addition to hydrogen being at initial pressure in range of 4.3-15.9 MPa. As a point of reference pure hydrogen release experiments were performed with use of the same experimental stand, experimental procedure and extension tubes. The results showed that N-2 addition may increase the initial pressure necessary to self-ignite the mixture as much as 2.12 or 2.85 - times for 5% and 10% N-2 addition, respectively. Additionally, simulations were performed with use of Cantera code (0-D) based on the ideal shock tube assumption and with the modified KIVA3V code (2-D) to establish the main factors responsible for ignition and sustained combustion during the release. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.

Year of Publication
2017
Journal
International Journal of Hydrogen Energy
Volume
42
Number of Pages
7340-7352
Type of Article
Article; Proceedings Paper
ISBN Number
0360-3199
Accession Number
WOS:000401214300011
DOI
10.1016/j.ijhydene.2016.06.051
Alternate Journal
Int J Hydrogen Energ
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