为未来的电气化飞行铺平道路:飞机结构电池集成安全标准的制定

G. Di Mauro, M. Guida, G. Olivares, L. M. Gomez
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引用次数: 0

摘要

在全球推动环境可持续发展的过程中,航空业越来越多地研究电气化作为减少排放和应对气候变化的潜在解决方案。然而,由于有限的能量和功率密度,传统的电池集成面临着显著的缺点,这对飞机的重量和性能产生了负面影响。在这种情况下,结构电池正引起人们的兴趣,因为它们将能量储存和承载能力结合在多功能材料结构中,从而有可能消除航空运输部门电气化的障碍。虽然这项新技术具有巨大的潜力,但它的集成引起了新的和独特的适航性问题。本活动旨在支持制定结构电池的飞机核证要求。由于认识到这项技术的双重性质,拟议的办法力求在正常和紧急飞行条件下保持甚至提高目前的安全水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Paving the Way for the Electrified Future of Flight: Safety Criteria Development for Integrating Structural Batteries in Aircraft

Within the global push towards environmental sustainability, the aviation industry is increasingly investigating electrification as a potential solution to reduce emissions and combat climate change. However, traditional battery integration faces significant drawbacks due to their limited energy and power densities, which negatively impact aircraft weight and performance. In this scenario, structural batteries are gaining interest, since they combine energy storage and load-bearing capabilities in multifunctional material structures, thus potentially eliminating barriers to the electrification of the air transport sector. While this novel technology holds immense potential, its integration raises new and unique airworthiness concerns. The present activity aims to support the development of aircraft certification requirements for structural batteries. Recognizing the dual nature of this technology, the proposed approach seeks to maintain or even enhance the current level of safety in both normal and emergency flight conditions.

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