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An insight into some innovative cycles for aircraft propulsion

机译:深入了解飞机推进的一些创新周期

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摘要

Emissions are important drivers in the design and use of aero-engines. This paper presents a part of the work carried out in the VITAL (EnVIronmenTALly aero-engine) project; it consists of a parameter study on the application of three innovative thermodynamic cycles to aircraft propulsion, looking for benefits on fuel consumption, carbon dioxide, nitrogen oxides, and noise. These cycles are intercooler-regenerative, the wave rotor topping, and the constant volume combustor cycles. The work, starting from a next-generation ultra-high bypass ratio turbofan, the baseline, and considering two possible design conditions, presents the influence of the application of these new cycles or design changes to the baseline on emissions and on the required technological level, represented by the turbine entry temperature (TET). VITAL is a project supported by the Sixth Framework Programme of the European Communities. The results show that some significant benefits on emissions can be achieved although they are linked to significant technology improvements and in-depth studies of the new components involved in cycle implementation.
机译:排放是航空发动机设计和使用的重要驱动力。本文介绍了VITAL(环境航空发动机)项目中进行的部分工作;它包括对三个创新热力学循环在飞机推进中的应用进行的参数研究,以寻求在燃料消耗,二氧化碳,氮氧化物和噪声方面的益处。这些循环是中冷器回热,波状转子打顶和恒定体积的燃烧器循环。该工作从下一代超高旁路比涡轮风扇开始,以基线为基础,并考虑了两种可能的设计条件,提出了应用这些新循环或对基线进行设计更改对排放和所需技术水平的影响。 ,以涡轮机入口温度(TET)表示。 VITAL是欧洲共同体第六框架计划支持的一个项目。结果表明,尽管与重大技术改进和对循环实施中涉及的新组件的深入研究相关联,但仍可实现一些显着的减排收益。

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