Performance results from a test of an S-76 rotor in the NASA Ames 80- by 120-foot wind tunnel
Patrick M. Shinoda, Wayne R. Johnson
Abstract
Patrick M. Shinoda, Wayne R. Johnson
Abstract
A full-scale helicopter rotor wind tunnel test has been conducted which covers a wide range of rotor-shaft angles-of-attack and 0-100 kt thrust conditions. The hover performance data thus obtained were compared with the results of momentum theory calculations; forward flight rotor-performance data were compared with calculations from a comprehensive rotorcraft analysis. These comparisons suggest that hover testing at an outdoor facility in the absence of ground effect is required to make a final determination of the absolute accuracy of the wind tunnel hover data.
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A full-scale helicopter rotor wind tunnel test has been conducted which covers a wide range of rotor-shaft angles-of-attack and 0-100 kt thrust conditions. The hover performance data thus obtained were compared with the results of momentum theory calculations; forward flight rotor-performance data were compared with calculations from a comprehensive rotorcraft analysis. These comparisons suggest that hover testing at an outdoor facility in the absence of ground effect is required to make a final determination of the absolute accuracy of the wind tunnel hover data.
Key concepts: Wind tunnel, Foot (prosody), Rotor (electric), Aeronautics, Aerospace engineering, Marine engineering, Engineering, Environmental science