NASA NTRS · 19930035403
Forcing function effects on unsteady aerodynamic gust response. I - Forcing functions
Abstract
The paper investigates the fundamental gust modeling assumption on the basis of a series of experiments performed in the Purdue Annular Cascade Research Facility. The measured unsteady flow fields are compared to linear-theory gust requirements. The perforated plate forcing functions closely resemble linear-theory forcing functions, with the static pressure fluctuations small and the periodic velocity vectors parallel to the downstream mean-relative flow angle over the entire periodic cycle. The airfoil forcing functions exhibit characteristics far from linear-theory gusts, with the alignment of the velocity vectors and the static pressure fluctuation amplitudes dependent on the rotor-loading condition, rotor solidity, and the inlet mean-relative flow angle. It is shown that airfoil wakes, both compressor and turbine, cannot be modeled with the boundary conditions of current state-of-the-art linear unsteady aerodynamic theory.
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Henderson, Gregory H., Fleeter, Sanford. 1992-06-01. Forcing function effects on unsteady aerodynamic gust response. I - Forcing functions. https://ntrs.nasa.gov/citations/19930035403
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