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Rotorcraft Control response using linearised and Non-linear Flight Dynamic Models with Different Inflow Models

Publication Type : Journal Article

Publisher : online by Cambridge University Press

Source : The Aeronautical Journal,

Url : https://www.cambridge.org/core/journals/aeronautical-journal/article/abs/rotorcraft-control-response-using-linearised-and-nonlinear-flight-dynamic-models-with-different-inflow-models/770B3643114E1C87053DF68A0DB5D7EC

Campus : Coimbatore

School : School of Engineering

Department : Aerospace

Year : 2017

Abstract : The aim of the present study is to develop a relatively simple flight dynamic model which should have the ability to analyse trim, stability and response characteristics of a rotorcraft under various manoeuvring conditions. This study further addresses the influence of numerical aspects of perturbation step size in linearised model identification and integration timestep on non-linear model response. In addition, the effects of inflow models on the non-linear response are analysed. A new updated Drees inflow model is proposed in this study and the applicability of this model in rotorcraft flight dynamics is studied. It is noted that the updated Drees inflow model predicts the control response characteristics fairly close to control response characteristics obtained using dynamic inflow for a wide range of flight conditions such as hover, forward flight and recovery from steady level turn. A comparison is shown between flight test data, the control response obtained from the simple flight dynamic model, and the response obtained using a more detailed aeroelastic and flight dynamic model.

Cite this Research Publication : Sakthivel, T., and Venkatesan, C., “Rotorcraft Control Response using Linearized and Nonlinear Flight Dynamic Models with Different Inflow Models”, The Aeronautical Journal, Volume 121, Issue 1238, April 2017 , pp. 553-575

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