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The Effect of Sub-systems Design Parameters on Preliminary Aircraft Design in a Multidisciplinary Design Environment

机译:多学科设计环境中子系统设计参数对飞机初步设计的影响

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The remarkable complexity of the aircraft design is due to several reasons and one of these is certainly the high number of completely different design disciplines involved in the process. Many efforts are spent to harmonize and optimize the aircraft design trying to consider all disciplines together with the same level of detail. Within the ongoing H2020 AGILE research, an aircraft MDO (Multidisciplinary Design Optimization) process is setting up linking several design tools and, above all, competences together. This paper focuses on the evaluation of the effects of the main on-board systems design parameters on the other disciplines. Starting from a baseline aircraft (AGILE DC1 regional turbofan), the effect of each parameters have been quantified in terms of variation of aircraft weight, fuel consumption and engine performance. This analysis represents a useful starting point to better understand the importance and the influence of novel On-Board Systems configurations, such as More and All Electric, to the overall aircraft design.
机译:飞机设计的显着复杂性是由于多种原因,其中之一当然是过程中涉及的大量完全不同的设计学科。为了协调和优化飞机设计,人们付出了许多努力,试图以相同的细节水平考虑所有学科。在正在进行的H2020 AGILE研究中,飞机MDO(多学科设计优化)过程正在建立,该过程将多个设计工具以及最重要的能力联系在一起。本文着重于评估主要车载系统设计参数对其他学科的影响。从基准飞机(AGILE DC1区域涡轮风扇)开始,已根据飞机重量,燃油消耗和发动机性能的变化来量化每个参数的影响。该分析代表了一个有用的起点,可以更好地理解新颖的机载系统配置(例如“更多和全电气”)对飞机总体设计的重要性和影响。

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