UFR 4-19 Evaluation: Difference between revisions
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== Comparison of CFD Calculations with Experiments == | == Comparison of CFD Calculations with Experiments == | ||
For both "weak" and "strong" Mach number cases,for comparison with the calculations, | |||
experimental data for four measurements stations after the shock-wave (h1,h2,h3,h4) are | |||
selected for the longitudinal velocity as well as pressure distributions along the bottom | |||
and the top wall of the diffuser. | |||
A representative figure of the shock-wave positions and the measurement stations is shown | |||
in fig.9.The x-location of the axial measurement stations are non-dimensionalized with the | |||
diffuser throat height,resulting in the following four stations: | |||
h1= 2.822,h2= 4.611,h3= 6.340 and h4= 7.493. | |||
Figure 9.Shock-waves positions and experimental measurements | |||
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Revision as of 12:18, 12 April 2016
Converging-diverging transonic diffuser
Confined flows
Underlying Flow Regime 4-19
Evaluation
Comparison of CFD Calculations with Experiments
For both "weak" and "strong" Mach number cases,for comparison with the calculations, experimental data for four measurements stations after the shock-wave (h1,h2,h3,h4) are selected for the longitudinal velocity as well as pressure distributions along the bottom and the top wall of the diffuser. A representative figure of the shock-wave positions and the measurement stations is shown in fig.9.The x-location of the axial measurement stations are non-dimensionalized with the diffuser throat height,resulting in the following four stations: h1= 2.822,h2= 4.611,h3= 6.340 and h4= 7.493.
Figure 9.Shock-waves positions and experimental measurements
Contributed by: Z. Vlahostergios, K. Yakinthos — Aristotle University of Thessaloniki, Greece
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