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A Methodology to Evaluate Electric Environmental Control System Impact on Aircraft Drag and Mission Performance

机译:一种评价电气环境控制系统对飞机阻力和任务性能影响的方法

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Due to strengthening of environmental constraints and current industrial competitiveness, the airplane manufacturing industry is urged to turn towards an increase use of sustainable energy sources. A prominent concept is airplane electrification, either of the engine or various non-propulsive systems. In this paper, electrification of the Environmental Control System (ECS), which is used for cabin pressurization and electronic devices cooling, is analyzed. The objective is to develop a calculation method which allows to study the impact of ECS electrification on the aircraft mission performance, by taking into account the ambient air extraction impact on the aircraft drag. The method can be used at early design, for a complete aircraft mission, and is based on penalty analysis methods to convert the system performance impacts into fuel weight delta. In this paper a conventional and a fully electrified architecture are compared for a short-medium range aircraft. While the electrical ECS architecture is shown to be more advantageous with respect to the engine performance alone, preliminary studies using the presented method indicate that a conventional ECS architecture is more adapted regarding the overall aircraft mission fuel performance.
机译:由于环境限制和当前的工业竞争力,敦促飞机制造业转向增加可持续能源的使用。突出的概念是飞机电气化,发动机或各种非推进系统。本文分析了用于驾驶室加压和电子设备冷却的环境控制系统(ECS)的电气化。目的是开发一种计算方法,允许研究ECS电气化对飞机任务性能的影响,通过考虑到飞机阻力的环境空气提取。该方法可在早期设计,进行完整的飞机任务,是基于罚款分析方法,将系统性能的影响转换为燃料重量三角洲。在本文中,将传统的和完全电气化的架构进行比较,用于短介质范围飞机。虽然电气ECS架构对于单独的发动机性能显示出更有利的,但是使用所示方法的初步研究表明,传统的ECS架构更适合于整体飞机任务燃料性能。

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