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Conceptual Design and Structural Analysis of an Open Rotor Hybrid Wing Body Aircraft

机译:开放旋翼混合翼飞机的概念​​设计与结构分析

摘要

Through a recent NASA contract, Boeing Research and Technology in Huntington Beach, CA developed and optimized a conceptual design of an open rotor hybrid wing body aircraft (HWB). Open rotor engines offer a significant potential for fuel burn savings over turbofan engines, while the HWB configuration potentially allows to offset noise penalties through possible engine shielding. Researchers at NASA Langley converted the Boeing design to a FLOPS model which will be used to develop take-off and landing trajectories for community noise analyses. The FLOPS model was calibrated using Boeing data and shows good agreement with the original Boeing design. To complement Boeing s detailed aerodynamics and propulsion airframe integration work, a newly developed and validated conceptual structural analysis and optimization tool was used for a conceptual loads analysis and structural weights estimate. Structural optimization and weight calculation are based on a Nastran finite element model of the primary HWB structure, featuring centerbody, mid section, outboard wing, and aft body. Results for flight loads, deformations, wing weight, and centerbody weight are presented and compared to Boeing and FLOPS analyses.
机译:根据美国宇航局最近的一项合同,位于加利福尼亚州亨廷顿海滩的波音研究与技术公司开发并优化了开放式旋翼混合机翼飞机(HWB)的概念设计。与涡轮风扇发动机相比,开放式转子发动机具有节省燃油的巨大潜力,而HWB配置可通过可能的发动机屏蔽来抵消噪声损失。 NASA Langley的研究人员将波音设计转换为FLOPS模型,该模型将用于开发起飞和着陆的轨迹,以进行社区噪声分析。 FLOPS模型使用波音数据进行了校准,并且与原始波音设计具有很好的一致性。为了补充波音公司详细的空气动力学和推进飞机机身集成工作,使用了新开发和验证的概念结构分析和优化工具来进行概念载荷分析和结构重量估算。结构优化和重量计算基于主要HWB结构的Nastran有限元模型,具有中心主体,中间部分,舷外机翼和尾部机身。给出了飞行载荷,变形,机翼重量和中心体重量的结果,并与波音和FLOPS分析进行了比较。

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    Gern Frank H.;

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  • 年度 2013
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