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Environmental assessment of hybrid-electric propulsion in conceptual aircraft design

机译:概念飞机设计中混合动力推进的环境评估

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The aeronautic industry is facing increasing pressure to design more efficient and sustainable aircraft to mitigate their impact on the environment. These solutions are mainly focused on: aerodynamics, structures/materials, propulsion and operations. This paper focuses on the potential of electric propulsion systems in different aircraft segments for reducing the environmental impact in the aircraft life cycle. With a twofold contribution and linking different areas, this study presents a methodological proposal for the environmental assessment of the propulsion system change in a consequential Life Cycle Assessment perspective. This methodology uses data from both a modified conceptual aircraft design adapted to hybrid-electric aircraft and a battery study. Results show not only the environmental impacts of the required battery systems for each aircraft segment in a life cycle perspective, but also in what contexts the hybrid-electric propulsion may be considered a best alternative environmentally when compared with fuel propulsion systems. For that, a sensitivity analysis illustrate the results for different electricity mix contexts and for different battery cell capacities. The main contribution for the overall life cycle impact is the process of charging a battery system, therefore the source of electricity generation is crucial for the environmental sustainability of a hybrid-electric aircraft. (C) 2019 Elsevier Ltd. All rights reserved.
机译:航空业正面临越来越大的压力,要求他们设计更高效,更可持续的飞机,以减轻其对环境的影响。这些解决方案主要集中在:空气动力学,结构/材料,推进和运行。本文重点介绍了电动推进系统在不同飞机段中的潜力,以减少飞机生命周期中的环境影响。本研究以双重贡献并联系了不同领域,从生命周期评估的角度提出了对推进系统变化进行环境评估的方法学建议。这种方法既使用了适用于混合电动飞机的改进概念飞机设计数据,又使用了电池研究数据。结果不仅显示了从生命周期角度来看每个飞机部分所需的电池系统对环境的影响,而且还显示了与燃料推进系统相比,混合动力推进在环境上的最佳替代方案。为此,敏感性分析说明了不同电混合环境和不同电池单元容量的结果。对整个生命周期影响的主要贡献是对电池系统进行充电的过程,因此,发电来源对于混合动力飞机的环境可持续性至关重要。 (C)2019 Elsevier Ltd.保留所有权利。

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