Performance of High-Pressure-Ratio Axial-Flow Compressor Using Highly Cambered Naca 65-Series Blower Blades at High Mach Numbers
Charles H Voit, D. C. Guentert, James F. Dugan
Abstract
Charles H Voit, D. C. Guentert, James F. Dugan
Abstract
A complete stage of an axial-flow compressor was designed and built to investigate the possibility of obtaining a high pressure ratio with an acceptable efficiency through the use of the optimum combination of high blade loading and high relative inlet Mach number. Over-all stage performance was investigated over a range of flows at equivalent tip speeds of 418 to 836 feet per second. At design speed (836 ft/sec), a peak total-pressure ration of 1.445 was obtained with an adiabatic efficiency of 0.89. For design angle of attack at the mean radius, a total-pressure ratio of 1.392 was obtained.
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A complete stage of an axial-flow compressor was designed and built to investigate the possibility of obtaining a high pressure ratio with an acceptable efficiency through the use of the optimum combination of high blade loading and high relative inlet Mach number. Over-all stage performance was investigated over a range of flows at equivalent tip speeds of 418 to 836 feet per second. At design speed (836 ft/sec), a peak total-pressure ration of 1.445 was obtained with an adiabatic efficiency of 0.89. For design angle of attack at the mean radius, a total-pressure ratio of 1.392 was obtained.
Key concepts: Mach number, Axial compressor, Overall pressure ratio, Gas compressor, Mechanics, Adiabatic process, RADIUS, Series (stratigraphy)