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Preliminary fuselage structural configuration of a flying-wing type airline

机译:飞翼型航空公司的初步机身结构配置

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摘要

The flying-wing is a type of configuration which is a tailless airplane accommodating all of its parts within the outline of a single airfoil. Theoretically, it has the most aerodynamic efficiency. The fuel consumption can be more efficient than the existed conventional airliner. It seems that this configuration can achieve the above mentioned requirements.According to these outstanding advantages, many aircraft companies did a great deal of projects on the flying-wing concept. However, the application was only for sport and military use; for airliner, none of them entered production.FW-11 is a flying-wing configuration airliner which is a design cooperation between Cranfield University and Aviation Industry Corporation of China (AVIC). Aiming the spatial economic and environmental needs, this 200-seat airliner would attract attention from airline companies for cost saving and environmental protection.Before start, this program is designated for a new generation commercial aircraft to compete with the existing same capability airliner, such as Airbus A320 and Boeing 767. As the first team of this program, the aim is to finish the conceptual design and prepare the relevant document for next two teams that will perform preliminary and detail design.As a member of FW-11 program and as part of the GDP, the author has been through the four conceptual design stages: engine manufacturers, aircraft family issues, structure design and the establishment of 3-D CAD model.The aim of IRP study is to focus on the initial fuselage design.
机译:飞翼是一种配置形式,是一种无尾飞机,可在单个翼型的轮廓内容纳其所有部件。从理论上讲,它具有最高的空气动力学效率。燃料消耗可以比现有的常规客机更有效。看起来这种配置可以满足上述要求。鉴于这些突出的优势,许多飞机公司在飞翼概念上做了很多项目。但是,该应用程序仅用于体育和军事用途。 FW-11是克兰菲尔德大学和中国航空工业集团(AVIC)之间的设计合作,是一种飞翼配置的客机。为了满足空间经济和环境需求,这架200个座位的客机将吸引航空公司的关注,以节省成本和保护环境。在开始之前,该计划被指定用于新一代商用飞机,以与现有的相同能力客机竞争,例如空客A320和波音767。作为该计划的第一小组,目标是完成概念设计并为接下来进行初步和详细设计的两个小组准备相关文件。作为FW-11计划的成员,以及在GDP方面,作者经历了四个概念设计阶段:发动机制造商,飞机家族问题,结构设计和3-D CAD模型的建立。IRP研究的目的是着眼于初始机身设计。

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    Cheng Yun;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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