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Approach to the Weight Estimation in the Conceptual Design of Hybrid-Electric-Powered Unconventional Regional Aircraft

机译:混合动力非传州区域飞机概念设计中的重量估计方法

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摘要

The present work deals with the development of an innovative approach to the weight estimation in the conceptual design of a Hybrid-Electric-Powered (HEP) Blended Wing Body (BWB) commercial aircraft. In the last few decades, the improvement of the environmental impact of civil aviation has been the major concern of the aeronautical engineering community, in order to guarantee the sustainable development of the system in presence of a constantly growing market demand. The sustained effort in the improvement of the overall efficiency of conventional aircraft has produced a new generation of vehicles with an extremely low level of emissions and noise, capable of covering the community requirements in the short term. Unfortunately, the remarkable improvements achieved represent the asymptotic limit reachable through the incremental enhancement of existing concepts. Any further improvement to conform to the strict future environmental target will be possible only through the introduction of breakthrough concepts. The aeronautical engineering community is thus concentrating the research on unconventional airframes, innovative low-noise technologies, and alternative propulsion systems. The BWB is one of the most promising layouts in terms of noise emissions and chemical pollution. The further reduction of fuel consumption that can be achieved with gas/electric hybridisation of the power-plant is herein addressed in the context of multidisciplinary analyses. In particular, the payload and range limits are assessed in relation to the technological development of the electric components of the propulsion system. The present work explores the potentialities of an energy-based approach for the initial sizing of a HEP unconventional aircraft in the early conceptual phase of the design. A detailed parametric analysis has been carried out to emphasise how payload, range, and degree of hybridisation are strictly connected in terms of feasible mission requirements and related to the reasonable expectations of development of electric components suitable for aeronautical applications.
机译:本工作涉及开发一种创新方法,在混合动力(HEP)混合翼体(BWB)商用飞机的概念​​设计中的重量估计。在过去的几十年中,改善民航环境影响一直是航空工程界的主要关注点,以保证在不断增长的市场需求存在下系统的可持续发展。改善传统飞机整体效率的持续努力已经生产出新一代的车辆,其排放和噪音水平极低,能够在短期内涵盖社区要求。不幸的是,实现的显着改进代表了通过增量增强现有概念的渐近极限。只有通过引入突破性概念,才能进一步改进符合严格的未来环境目标。因此,航空工程社区集中了对非传统机身,创新的低噪声技术和替代推进系统的研究。 BWB是噪音排放和化学污染方面最有前途的布局之一。在本文在多学科分析的背景下解决了能够通过电厂的气体/电气杂交来实现的燃料消耗的进一步减少。特别地,有效载荷和范围限制是关于推进系统的电气部件的技术发展的评估。目前的工作探讨了在设计的早期概念阶段初始尺寸的基于能量的方法的潜在能力。已经进行了详细的参数分析,以强调有效载荷,范围和程度如何在可行的任务要求方面严格连接,并与适用于航空应用的电气组件的合理预期相关。

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