单通道飞机并联混合动力推进系统发动机可操作性和整体性能评估

Sangkeun Kang, I. Roumeliotis, Jinning Zhang, V. Pachidis, Olivier Broca
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引用次数: 1

摘要

本文旨在评估一架150座单通道飞机并联配置下燃气轮机的可操作性和混合动力推进系统的整体性能。考虑两种安排:一种是低压轴被提升,另一种是高压轴被提升。为了确定混合策略的限制,考虑了稳态和瞬态运行,并确定了混合对压缩机可操作性的影响。在确定了燃气轮机运行的电力接载限制后,针对相关情况对飞机水平上的系统性能进行了量化。针对不同的功率混合程度,采用了不同的功率管理策略。结果表明,尽管混合动力推进可能会改善污染物排放和燃油消耗,但这是以降低有效载荷和可操作性为代价的。增压低压轴可能会给发动机带来最大的性能效益,但会带来显著的重量损失,而低压压气机系统的可操作性则会受到负面影响。另一方面,提高高压轴提供了较低的发动机性能优势,但重量损失较小,操作性问题较少。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessment of Engine Operability and Overall Performance for Parallel Hybrid Electric Propulsion Systems for a Single-Aisle Aircraft
This paper aims to assess the gas turbine operability and overall hybrid electric propulsion system performance for a parallel configuration applied to a 150 passenger single-aisle aircraft. Two arrangements are considered: one where the low pressure shaft is boosted and one where the high pressure shaft is boosted. For identifying limits in the hybridization strategy steady state and transient operation are considered and the hybridization effect on compressor operability is determined. Having established the electric power on-take limits with respect to gas turbine operation the systems performance at aircraft level is quantified for the relevant cases. Different power management strategies are applied for the two arrangements and for different power degrees of hybridization. The results indicate that despite the fact that pollutant emission and fuel consumption may improved for hybrid propulsion, this comes at the cost of reduced payload and operability margins. Boosting the low pressure shaft may give the highest engine performance benefits but with a significant weight penalty, while the low pressure compressor system operability is negatively affected. On the other hand boosting the high pressure shaft provides lower engine performance benefits but with smaller weight penalty and with less operability concerns.
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