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Yining Zhang

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Jul 2026

Effects of Rotating Back-propagation Pressure Wave on Centrifugal Compressor Operation

Research has shown that rotating detonation turbine engines have the potential to enhance aero-engine performance. However, the rotating back-propagation pressure wave (RBPW) generated by the detonation-based combustor can adversely affect the upstream compressor. In this study, this unsteady backpressure was simulated using a user-defined function (UDF), and its impact on a centrifugal compressor was numerically investigated. The results show that, under single-wave RBPW, both the total pressure ratio and isentropic efficiency declined at the same mass flow rate compared to steady-state conditions. Variations in the characteristic parameters of the RBPW resulted in shifts of the compressor's operating point. A higher-pressure distortion index caused a greater deviation from the original characteristic line. Increasing the propagation frequency or using a multi-wave configuration mitigated these adverse effects. Under four-wave excitation, compressor performance exceeded that of steady operation. Finally, the stability boundaries of the compressor under RBPW were defined in terms of constant flow rate and constant power constraints.

Y. Qi, Cha Xiong, Yining Zhang et al. · 0 citations