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Architecture Evaluation of a Single-aisle Turbo-electric Aircraft with Single Engine-out Constraint

机译:具有单引擎输出约束的单通道涡轮电动飞机的架构评估

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In recent years, NASA has been actively pushing for electric aircraft to reduce fuel burn, carbon emissions and noise. However, the current battery technology prevents fully battery-driven aircraft from becoming a reality in the near future. As a stepping- stone towards this initiative, hybrid-electric and turbo-electric aircraft are being researched to understand the impact of electrified propulsion on the performance of the aircraft, such as the Boeing Super Ultra (SUGAR) Volt, NASA Single-aisle Turbo-electric Commercial Transport with Fuselage Boundary Layer Ingestion (STARC-ABL), and Airbus E-Thrust concepts. A single-engine turbo-electric concept for a single-aisle aircraft was studied and the performance was evaluated. The results of this analysis indicated that this concept provides a significant fuel burn reduction, but at the cost of having a redundant system to provide power during engine-out situations. The objective of this research is to study and compare redundant power sources for a single-aisle turbo-electric aircraft to satisfy the single engine out constraint. The alternatives considered are - pure turbo-electric two-turboshaft engine architecture and a hybrid-turbo-electric single-turboshaft engine architecture with a battery pack for redundant power. This study is also aimed at evaluating different ways to size and use the battery that would provide the most fuel burn benefit. A performance analysis of these different architectures was performed and the results are presented in this paper.
机译:近年来,美国宇航局一直在积极推动电动飞机减少燃油消耗,碳排放和噪音。但是,当前的电池技术无法在不久的将来使完全由电池驱动的飞机成为现实。作为实现该计划的基础,正在研究混合电动和涡轮电动飞机,以了解电动推进对飞机性能的影响,例如波音Super Ultra(SUGAR)Volt,NASA单通道涡轮增压器机身边界层摄入的电动商业运输(STARC-ABL)和空中客车电子推力概念。研究了用于单通道飞机的单引擎涡轮电动概念,并对其性能进行了评估。分析的结果表明,该概念可显着减少燃油消耗,但要付出代价,即要有一个冗余系统来在发动机熄火时提供动力。这项研究的目的是研究和比较单通道涡轮电动飞机的冗余电源,以满足单引擎输出的限制。考虑的替代方案包括-纯涡轮电动两涡轮轴发动机架构和混合动力涡轮电动单涡轮轴发动机架构,带有电池组以提供冗余动力。这项研究还旨在评估不同尺寸和使用电池的方法,这些方法将最大程度地节省燃料。对这些不同体系结构进行了性能分析,并在本文中给出了结果。

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