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- W3113182983 endingPage "106410" @default.
- W3113182983 startingPage "106410" @default.
- W3113182983 abstract "Fuel mixing and penetration are known as substantial factor for advance of current scramjet engine. In this article, mixing and distribution of multi hydrogen jets are investigated under the impacts of downstream sinusoidal wall. This research tries to estimate the fuel jet interactions through the deflection of flow by downstream wavy wall. To perform our investigations, computational fluid dynamic with SST turbulence model is employed to simulate sonic multi hydrogen cross jets at supersonic air stream (M=4). The influences of fuel jet gaps and downstream wavy profile are comprehensively studied to disclose the importance of downstream on the fuel distribution and mixing region. Our results indicate that the fuel distribution in the downstream is substantially limited by increasing the frequency of downstream wavy wall. It is also noticed that the fuel concentration is decreased by increasing the jet space on the symmetry plane." @default.
- W3113182983 created "2020-12-21" @default.
- W3113182983 creator A5020451053 @default.
- W3113182983 creator A5035628924 @default.
- W3113182983 creator A5036668893 @default.
- W3113182983 creator A5071962721 @default.
- W3113182983 creator A5090358980 @default.
- W3113182983 date "2021-02-01" @default.
- W3113182983 modified "2023-10-15" @default.
- W3113182983 title "Effect of downstream sinusoidal wall on mixing performance of hydrogen multi-jets at supersonic flow: Numerical study" @default.
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