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- W2327142017 abstract "A coupled, transient computational methodology is developed to simulate interaction the mainpath and secondary flow stream of a gas turbine engine. The MS-TURBO code is used for mainpath flow, and secondary flow is handled by SCISEAL. Data is exchanged at the (rim seal) interface with proper flux conservation. The coupled code was used to obtain solutions for the high-pressure turbine rig (HP Rig, UTRC), built for primary-secondary flow interaction study and experimental data for code validation. Simulations were performed at different cavity purge flow rates. Time-averaged cavity inlet pressures and flow rates show fair correlation with the experiments. Computed transient pressure traces at different cavity locations were compared with experiments with fair to good correlation in terms of amplitudes and trends in amplitude variations with purge rates. At low purge rates, a recirculation zone is seen in the rim seal, which allows some gas ingestion observed in the experiments. The recirculation zone is absent at high purge rates corresponding to no mainpath gas ingestion." @default.
- W2327142017 created "2016-06-24" @default.
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- W2327142017 date "2001-07-08" @default.
- W2327142017 modified "2023-09-23" @default.
- W2327142017 title "Gas turbine primary-secondary flowpath interaction - Transient, coupled simulations and comparison with experiments" @default.
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- W2327142017 doi "https://doi.org/10.2514/6.2001-3627" @default.
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