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CORDIS - Résultats de la recherche de l’UE
CORDIS

INSpiring Pressure gain combustion Integration, Research, and Education

Periodic Reporting for period 2 - INSPIRE (INSpiring Pressure gain combustion Integration, Research, and Education)

Période du rapport: 2023-01-01 au 2024-12-31

Figure 13. PLA pressure signals and PIV velocity flow fields for 10.5 %, 12.5 %, 14.5 %, 16.5 %, 18.
Figure 10. Schlieren images of the combustion regime for a stoichiometric 5%H2/C10H22/O2/Ar mixture
Figure 8. Comparisons of pressure field maps for varying outlet restrictions
Figure 5. MIE versus normalized turbulence intensity (u’/Sl) for 0% RGB dilution for G1 and G2
Figure 1. Overall conceptual organization of INSPIRE network
Figure 9. Normalized time-averaged Mach number. M_j is the Mach number of the ideally expanded jet
Figure 4. Comparison between exp and AVBP results of the CV2 rig ignition
Figure 12. Schlieren images, low and high BR, different film cooling holes
Figure 6. Soft-DTW averages of pressure and luminosity with the time series data for a representativ
Figure 14 - a) WTEMP code model, b) TRANSEO code modelling
Figure 15. Pressure-Temperature distribution - where 1 is intake outlet, 2 is compressor outlet, 3 i
Figure 7. 3D visualization of the LES of a rotating detonation chamber. (Left) Isocontour of ∇P /P
Figure 3. Snapshot of the instantaneous density gradient magnitude field with an isosurface of the Q
Figure 2. Spark-Ignited Combustion (Cycle 5) tested on CV2 rig at ENSMA
Figure 11. Film cooled TU Berlin RDC modelling: section of Mesh grid used for simulation and the obt
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