首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Dual Drive Booster for a Two-Spool Turbofan: High Shaft Power Offtake Capability for More Electric Aircraft and Hybrid Aircraft Concepts
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Dual Drive Booster for a Two-Spool Turbofan: High Shaft Power Offtake Capability for More Electric Aircraft and Hybrid Aircraft Concepts

机译:用于双阀芯涡扇发动机的双驱动助力器:高轴功率输出能力,适用于更多的电动飞机和混合动力飞机概念

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摘要

The effects of high shaft power offtake (POT) in a direct drive, a geared drive, and a novel turbofan configuration are investigated. A design and off-design performance analysis shows the configuration specific limitations and advantages. The more electric aircraft. (MEA) concept promises to offer advantages with respect to aircraft performance, maintenance, and operating costs. The engines for the MEA concept are based on conventional turbofan architectures. These engines are designed for significantly increased shaft POT that is required by the airframe, and the shaft power is usually taken off the high-pressure (HP) spool. This can impair the off-design performance of the engine and lead to compromises during engine design and to operability limitations. Taking the power off the low-pressure (LP) spool mitigates some of the problems but has other limitations. In this work, all alternative novel turbofan architecture is investigated for its potential to avoid the problems related to high shaft POTs. This architecture is called the dual drive booster because it uses a summation gearbox to drive the booster from both the LP and HP spool. The shaft power, if taken off the booster spool, is effectively provided by both the LP and HP spools, which allows the provision of very high power levels. This new concept is benchmarked against a two-spool direct drive and a geared drive turbofan (GTE). Furthermore, it is described, how the new architecture can incorporate an embedded motor generator. The presented concept mitigates some of the problems, which are encountered during high POT in conventional configurations. In particular, the core compressors are less affected by a change in shaft POT. Tins allows higher POTs and gives more flexibility during engine design and operation. Additionally, the potential to use the new configuration as a gas turbine-electric hybrid engine is assessed, where electrical power boost is applied during critical flight phases. The ability to convert additional shaft power is compared with conventional configurations. Here, the new configuration also shows superior behavior because the core compressors are significantly less affected by power input than in conventional configurations. The spool speed and its variation are more suitable for electrical machines than in conventional configuration with LP spool power transfer. The dual drive booster concept is particularly suited for applications with high shaft POTs and inputs, and should be considered for propulsion of MEAs.
机译:研究了直接驱动,齿轮传动和新型涡轮风扇配置中高轴功率输出(POT)的影响。设计和非设计性能分析显示了特定于配置的限制和优势。电动飞机越多。 (MEA)概念有望在飞机性能,维护和运营成本方面提供优势。 MEA概念的引擎基于常规涡轮风扇架构。这些发动机设计用于显着增加机身所需的轴POT,并且通常会从高压(HP)阀芯上获取轴功率。这会损害发动机的非设计性能,并导致发动机设计过程中的妥协和可操作性限制。切断低压(LP)阀芯的电源可以缓解某些问题,但还有其他限制。在这项工作中,研究了所有替代性新型涡轮风扇架构的潜力,从而避免了与高轴POT相关的问题。这种架构称为双驱动助力器,因为它使用求和齿轮箱从LP和HP线轴驱动助力器。 LP和HP阀芯均有效地提供了从辅助阀芯上取下的轴功率,从而可提供非常高的功率水平。这个新概念以两阀芯直接驱动和齿轮传动涡轮风扇(GTE)为基准。此外,描述了新架构如何结合嵌入式电动发电机。提出的概念减轻了常规配置中高POT期间遇到的一些问题。特别是,核心压缩机受轴POT变化的影响较小。罐子允许更高的POT,并在发动机设计和运行过程中提供更大的灵活性。此外,评估了将新配置用作燃气轮机-电动混合动力发动机的潜力,其中在关键飞行阶段会施加电功率提升。转换额外轴功率的能力与常规配置进行了比较。在此,新配置还显示了出色的性能,因为与传统配置相比,核心压缩机受功率输入的影响要小得多。与具有LP阀芯功率传输的常规配置相比,阀芯速度及其变化更适合电机。双驱动助力器概念特别适用于具有高轴POT和输入的应用,并且应考虑用于MEA的推进。

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