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A conceptual wing-box weight estimation model for transport aircraft

机译:运输飞机的概念​​机翼盒重量估计模型

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摘要

This paper presents an overview of an advanced, conceptual wing-box weight estimation and sizing model for transport aircraft. The model is based on linear thin-walled beam theory, where the wing-box is modelled as a simple, swept tapered multi-element beam. It consists of three coupled modules, namely sizing, aeroelastic analysis, and weight prediction. The sizing module performs generic wing-box sizing using a multi-element strategy. Three design cases are considered for each wing-box element. The aeroelastic analysis module accounts for static aeroelastic requirements and estimates their impact on the wing-box sizing. The weight prediction module estimates the wing-box weight based on the sizing process, including static aeroelastic requirements. The breakdown of the models into modules increases its flexibility for future enhancements to cover complex wing geometries and advanced aerospace materials. The model has been validated using five different transport aircraft. It has shown to be sufficiently robust, yielding an error bandwidth of ±3%, an average error estimate of-0.2%, and a standard error estimate of 1.5%.
机译:本文概述了运输飞机的先进概念机翼盒重量估计和尺寸模型。该模型基于线性薄壁梁理论,其中机翼盒被建模为简单的后掠锥形多元素梁。它由三个耦合模块组成,即尺寸确定,气动弹性分析和重量预测。尺寸调整模块使用多元素策略执行通用机翼盒尺寸调整。每个机翼盒元素考虑三个设计案例。气动弹性分析模块考虑了静态气动弹性需求,并估计了它们对机翼尺寸的影响。重量预测模块根据尺寸过程(包括静态气动弹性要求)估算机翼盒重量。将模型分解为模块可以增加其灵活性,以便将来进行扩展以涵盖复杂的机翼几何形状和先进的航空航天材料。该模型已使用五架不同的运输飞机进行了验证。它显示出足够的鲁棒性,产生的误差带宽为±3%,平均误差估计值为-0.2%,标准误差估计值为1.5%。

著录项

  • 来源
    《The Aeronautical Journal》 |2013年第1191期|533-551|共19页
  • 作者单位

    College of Engineering Swansea University Swansea, UK;

    Department of Aerospace Engineering University of Bristol Bristol, UK;

    Bauhaus Luftfahrt e.V. Munich, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
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