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Proof of Concept Study for Fuselage Boundary Layer Ingesting Propulsion

机译:机身边界层摄取推进概念研究证明

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摘要

Key results from the EU H2020 project CENTRELINE are presented. The research activities undertaken to demonstrate the proof of concept (technology readiness level—TRL 3) for the so-called propulsive fuselage concept (PFC) for fuselage wake-filling propulsion integration are discussed. The technology application case in the wide-body market segment is motivated. The developed performance bookkeeping scheme for fuselage boundary layer ingestion (BLI) propulsion integration is reviewed. The results of the 2D aerodynamic shape optimization for the bare PFC configuration are presented. Key findings from the high-fidelity aero-numerical simulation and aerodynamic validation testing, i.e., the overall aircraft wind tunnel and the BLI fan rig test campaigns, are discussed. The design results for the architectural concept, systems integration and electric machinery pre-design for the fuselage fan turbo-electric power train are summarized. The design and performance implications on the main power plants are analyzed. Conceptual design solutions for the mechanical and aero-structural integration of the BLI propulsive device are introduced. Key heuristics deduced for PFC conceptual aircraft design are presented. Assessments of fuel burn, NOx emissions, and noise are presented for the PFC aircraft and benchmarked against advanced conventional technology for an entry-into-service in 2035. The PFC design mission fuel benefit based on 2D optimized PFC aero-shaping is 4.7%.
机译:欧盟H2020项目中心线主要结果。开展以证明理念为机身唤醒填充推进一体化的所谓的推进机身的概念(PFC)证明(技术准备水平,TRL 3)研究活动进行了讨论。在宽体细分市场的技术应用案例的动机。对于机身边界层摄入的发达性能簿记方案(BLI)推进一体化的进展。所述2D气动外形优化裸露的PFC配置的结果。从高保真航空数值模拟和空气动力学验证测试,即,整体飞机风洞和BLI风扇钻机测试活动的主要发现,进行了讨论。为建筑理念,系统集成和电机预先设计,机身风扇涡轮电力动力总成的设计结果进行了总结。主电厂的设计和性能的影响进行了分析。为BLI推进设备的机械和航空结构整合概念设计方案进行了介绍。推导出PFC概念飞机设计的关键启发介绍。燃料的燃烧评估,NOx排放和噪声都对PFC飞机和基准对先进常规技术的入门到服务基于2D 2035 PFC设计任务燃油效益优化PFC航空整形是4.7%。

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