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Equivalent plate modeling for conceptual design of aircraft wing structures

机译:飞机机翼结构概念设计的等效板建模

摘要

This paper describes an analysis method that generates conceptual-level design data for aircraft wing structures. A key requirement is that this data must be produced in a timely manner so that is can be used effectively by multidisciplinary synthesis codes for performing systems studies. Such a capability is being developed by enhancing an equivalent plate structural analysis computer code to provide a more comprehensive, robust and user-friendly analysis tool. The paper focuses on recent enhancements to the Equivalent Laminated Plate Solution (ELAPS) analysis code that significantly expands the modeling capability and improves the accuracy of results. Modeling additions include use of out-of-plane plate segments for representing winglets and advanced wing concepts such as C-wings along with a new capability for modeling the internal rib and spar structure. The accuracy of calculated results is improved by including transverse shear effects in the formulation and by using multiple sets of assumed displacement functions in the analysis. Typical results are presented to demonstrate these new features. Example configurations include a C-wing transport aircraft, a representative fighter wing and a blended-wing-body transport. These applications are intended to demonstrate and quantify the benefits of using equivalent plate modeling of wing structures during conceptual design.
机译:本文介绍了一种分析方法,该方法可以为飞机机翼结构生成概念级别的设计数据。关键要求是必须及时生成此数据,以便多学科综合代码可以有效地使用它们进行系统研究。通过增强等效的板结构分析计算机代码来开发这种功能,以提供更全面,健壮和用户友好的分析工具。本文重点介绍了等效层压板解决方案(ELAPS)分析代码的最新增强功能,该功能大大扩展了建模能力并提高了结果的准确性。建模方面的新增功能包括使用平面外板段表示小翼和先进的机翼概念(例如C型机翼),以及对内部肋骨和翼梁结构进行建模的新功能。通过在配方中包括横向剪切效应,并在分析中使用多组假定的位移函数,可以提高计算结果的准确性。给出了典型结果来演示这些新功能。示例配置包括C翼运输机,代表性战斗机机翼和混合翼体运输机。这些应用程序旨在演示和量化在概念设计期间使用机翼结构的等效板建模的好处。

著录项

  • 作者

    Giles Gary L.;

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  • 年度 1995
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  • 原文格式 PDF
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