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Comparison of Structural Concepts for Transport Aircraft with a Tail Cone Turbine

机译:尾锥涡轮运输机结构概念的比较

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摘要

An evaluation of three structural concepts for an advanced aircraft design with a tail cone turbine is presented. Structural models were developed using an innovative rapid finite element modeling tool called Conceptual Design Shop (CDS). CDS is an attempt to fill a gap in current finite element modeling software to automatically connect wings and tails to the fuselage with sufficient support structure in airframe models. For comparison with actual aircraft structures, a model of a transport aircraft design developed using CDS is compared with published structural weight data for a Boeing 737-200. A method for computing aerodynamic stability parameters from an MSC/NASTRAN finite element analysis output deck is also discussed. Finally, the weight effects for using a tail cone turbine in an advanced transport aircraft design are evaluated by comparing three composite structural models, for which component thicknesses and cross-sections are sized by the Hypersizer software.
机译:提出了对具有尾锥涡轮机的先进飞机设计的三个结构概念的评估。结构模型是使用称为概念设计车间(CDS)的创新型快速有限元建模工具开发的。 CDS试图填补当前有限元建模软件中的空白,以通过机体模型中的足够支撑结构将机翼和机尾自动连接到机身。为了与实际飞机结构进行比较,将使用CDS开发的运输机设计模型与波音737-200的已发布结构重量数据进行了比较。还讨论了一种从MSC / NASTRAN有限元分析输出平台计算空气动力学稳定性参数的方法。最后,通过比较三种复合结构模型来评估在高级运输飞机设计中使用尾锥涡轮机的重量效应,该模型通过Hypersizer软件确定组件的厚度和横截面尺寸。

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