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   numerical investigations into the origin of tip unsteadiness in a transonic compressor  
   
نویسنده an g. ,wu y. ,lang j. ,chen z. ,wang b.
منبع journal of applied fluid mechanics - 2018 - دوره : 11 - شماره : 4 - صفحه:1133 -1141
چکیده    Three-dimensional numerical simulations are conducted to investigate the origin of flow unsteadiness and its associated unsteady flow phenomena in a transonic compressor rotor. the predicted results are compared with the available experimental data and a good agreement is achieved. the numerical monitoring results and further analyses of the flow field indicate that flow unsteadiness is detected in the passage with the operating condition approaching the stability limit, and the highest oscillating region is at the leading edge of the blade pressure surface; the tip leakage vortex breakdown is not a decisive factor for the flow unsteadiness, and the shock oscillation is a unsteady flow phenomenon resulted from the vibration of the recirculation region; a utype vortex emerges in the tip leakage vortex breakdown region, and its periodic impingement on the pressure surface of the adjacent blade is treated as a trigger that leads to the flow unsteadiness.
کلیدواژه transonic compressor rotor; flow unsteadiness; vortex breakdown; shock wave oscillation
آدرس northwestern polytechnical university, shaanxi key laboratory of internal aerodynamics in aero-engine, china, northwestern polytechnical university, shaanxi key laboratory of internal aerodynamics in aero-engine, china, northwestern polytechnical university, shaanxi key laboratory of internal aerodynamics in aero-engine, china, northwestern polytechnical university, shaanxi key laboratory of internal aerodynamics in aero-engine, china, northwestern polytechnical university, shaanxi key laboratory of internal aerodynamics in aero-engine, china
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