1998Unpublished venueRequires access

A Generalized Dynamic Wake Model with Wake Distortion Effects

Krishnamohan R. Krothapalli, J. V. R. Prasad, David A. Peters

Open publisher page 6 citations

Abstract

For many years, analysts have been puzzled by the fact that the off-axis coupling of a helicopter exhibits the opposite sign in flight tests as compared to simulations. Recently, researchers have shown that the effect may be attributable to the bending of the wake during a pitching maneuver, which introduces a fore-to- aft gradient in induced flow that can reverse the predicted sign of the roll coupling. Other research has shown that this result can also be obtained with momentum and vortex theory. In the present work, a generalized model for wake distortion in hover is augmented using the exact relation derived from vortex tube theory. This model is then coupled with a simple flap model to investigate the influence on dynamic coupling.

About this research paper

What this paper is about

For many years, analysts have been puzzled by the fact that the off-axis coupling of a helicopter exhibits the opposite sign in flight tests as compared to simulations. Recently, researchers have shown that the effect may be attributable to the bending of the wake during a pitching maneuver, which introduces a fore-to- aft gradient in induced flow that can reverse the predicted sign of the roll coupling. Other research has shown that this result can also be obtained with momentum and vortex theory. In the present work, a generalized model for wake distortion in hover is augmented using the exact relation derived from vortex tube theory. This model is then coupled with a simple flap model to investigate the influence on dynamic coupling.

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OpenAlex reports 6 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

For many years, analysts have been puzzled by the fact that the off-axis coupling of a helicopter exhibits the opposite sign in flight tests as compared to simulations. Recently, researchers have shown that the effect may be attributable to the bending of the wake during a pitching maneuver, which introduces a fore-to- aft gradient in induced flow that can reverse the predicted sign of the roll coupling. Other research has shown that this result can also be obtained with momentum and vortex theory. In the present work, a generalized model for wake distortion in hover is augmented using the exact relation derived from vortex tube theory. This model is then coupled with a simple flap model to investigate the influence on dynamic coupling.

Key concepts: Wake, Distortion (music), Computer science, Physics, Mechanics, Telecommunications, Bandwidth (computing), Amplifier

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