2008•12th AIAA/ISSMO Multidisciplinary Analysis and Optimization ConferenceRequires access

Stochastic Gust Analysis Techniques for Aircraft Conceptual Design

Krzysztof J. Fidkowski, Ilan Kroo, Karen E. Willcox, Frode Engelson

Open publisher page 23 citations

Abstract

Dynamic loading constraints due to maneuver and gust loads are an important design consideration for novel aircraft configurations. Incorporating these constraints in the early design process with an appropriate level of fidelity presents a significant challenge, due both to the need for more detailed aerodynamics and control modeling, and to the stochas-tic nature of the gust encounter problem. This paper presents a stochastic gust analysis approach that is suitable for a multidisciplinary design optimization setting that incorpo-rates dynamic loading constraints. The analysis approach employs Lyapunov and matched filter theory methods to address the stochastic nature of the gust response. A set of gust simulation studies are carried out to assess the relative importance of the various physics involved in aircraft gust encounters and the effects of different modeling assumptions. The study demonstrates the importance of modeling rigid body motion, pitch dynamics, and aircraft flexibility, but shows that for gust encounters at typical flight conditions, a quasi-steady aerodynamics assumption is reasonable for load predictions over the majority of the wing acerage, meaning that full unsteady aerodynamic simulations are likely not required for typical gust lengths. I.

About this research paper

What this paper is about

Dynamic loading constraints due to maneuver and gust loads are an important design consideration for novel aircraft configurations. Incorporating these constraints in the early design process with an appropriate level of fidelity presents a significant challenge, due both to the need for more detailed aerodynamics and control modeling, and to the stochas-tic nature of the gust encounter problem. This paper presents a stochastic gust analysis approach that is suitable for a multidisciplinary design optimization setting that incorpo-rates dynamic loading constraints. The analysis approach employs Lyapunov and matched filter theory methods to address the stochastic nature of the gust response. A set of gust simulation studies are carried out to assess the relative importance of the various physics involved in aircraft gust encounters and the effects of different modeling assumptions. The study demonstrates the importance of modeling rigid body motion, pitch dynamics, and aircraft flexibility, but shows that for gust encounters at typical flight conditions, a quasi-steady aerodynamics assumption is reasonable for load predictions over the majority of the wing acerage, meaning that full unsteady aerodynamic simulations are likely not required for typical gust lengths. I.

Why it matters

OpenAlex reports 23 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Dynamic loading constraints due to maneuver and gust loads are an important design consideration for novel aircraft configurations. Incorporating these constraints in the early design process with an appropriate level of fidelity presents a significant challenge, due both to the need for more detailed aerodynamics and control modeling, and to the stochas-tic nature of the gust encounter problem. This paper presents a stochastic gust analysis approach that is suitable for a multidisciplinary design optimization setting that incorpo-rates dynamic loading constraints. The analysis approach employs Lyapunov and matched filter theory methods to address the stochastic nature of the gust response. A set of gust simulation studies are carried out to assess the relative importance of the various physics involved in aircraft gust encounters and the effects of different modeling assumptions. The study demonstrates the importance of modeling rigid body motion, pitch dynamics, and aircraft flexibility, but shows that for gust encounters at typical flight conditions, a quasi-steady aerodynamics assumption is reasonable for load predictions over the majority of the wing acerage, meaning that full unsteady aerodynamic simulations are likely not required for typical gust lengths. I.

Key concepts: Computer science, Conceptual design, Aerospace engineering, Aeronautics, Engineering, Human–computer interaction

Related papers

Back to paper searchBrowse research topicsOriginal source
Stochastic Gust Analysis Techniques for Aircraft Conceptual Design — Research Paper | ScholarLens