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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Conceptual design and analysis of blended-wing-body aircraft
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Conceptual design and analysis of blended-wing-body aircraft

机译:混合机翼飞机的概念​​设计与分析

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摘要

Due to the unconventional nature of the blended wing body (BWB) no off-the-shelf software package exists for its conceptual design. This study details a first step towards the implementation of traditional and BWB-specific design and analysis methods into a software tool to enable preliminary sizing of a BWB. The tool is able to generate and analyze different BWB configurations on a conceptual level. This paper investigates three different BWB configurations. The first configuration is an aft-swept BWB with aft-mounted engines, the second configuration is an aft-swept BWB with wing-mounted engines and the third configuration is a forward-swept BWB with wing-mounted engines. These aircraft comply with the same set of top-level requirements and airworthiness requirements. Each of the designs has been optimized for maximum harmonic range, while keeping its maximum take-off weight constant and identical. Results show that the forward-swept configuration with wing-mounted engines has the highest harmonic range. These findings warrant further investigation in this configuration and other alternative BWB configurations.
机译:由于混合机翼机身(BWB)的非常规特性,因此不存在用于其概念设计的现成软件包。这项研究详细介绍了将传统的和BWB特定的设计和分析方法实施到软件工具中的第一步,从而能够初步确定BWB的尺寸。该工具能够在概念级别上生成和分析不同的BWB配置。本文研究了三种不同的BWB配置。第一种配置是带有后装式发动机的后掠式BWB,第二种配置是带有机翼式发动机的后掠式BWB,第三种配置是带有机翼式发动机的前掠式BWB。这些飞机符合同一套最高要求和适航要求。每个设计都针对最大谐波范围进行了优化,同时保持其最大起飞重量恒定且相同。结果表明,带有机翼发动机的前掠配置具有最高的谐波范围。这些发现需要进一步研究此配置和其他替代BWB配置。

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