Large-eddy simulation of underexpanded natural gas jets

Extended abstract

Conference Paper (2013)
Author(s)

V.A. Vuorinen (Aalto University)

C. Duwig (Lund University)

O Kaario (Aalto University)

M. Larmi (Aalto University)

BJ Boersma (TU Delft - Process and Energy, TU Delft - Energy Technology)

Department
Process and Energy
Copyright
© 2013 V.A. Vuorinen, C. Duwig, O. Kaario, M. Larmi, B.J. Boersma
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Publication Year
2013
Language
English
Copyright
© 2013 V.A. Vuorinen, C. Duwig, O. Kaario, M. Larmi, B.J. Boersma
Department
Process and Energy
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Abstract

Large-Eddy Simulations (LES) based on scale-selective implicit filtering are carried out in order to study the effect of nozzle pressure ratios on the characteristics of highly underexpanded jets. Pressure ratios ranging from 3 to 9 with Reynolds numbers of the order 70000 to 150000 are considered. The studied configuration agrees well with the classical picture of the structure of highly underexpanded jets. The coherent structures of the jet are investigated using Proper Orthogonal Decomposition (POD). The statistics of scalar dissipation rate are investigated in detail. Using the first POD modes, we reconstruct the scalar fields and provide the link between the dominant modes and the dissipative structures.

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