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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Aero Engine Concepts Beyond 2030: Part 2-The Free-Piston Composite Cycle Engine
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Aero Engine Concepts Beyond 2030: Part 2-The Free-Piston Composite Cycle Engine

机译:Aero发动机概念超过2030:第2部分 - 自由活塞复合循环发动机

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摘要

Recognizing the attention currently devoted to the environmental impact of aviation, this three-part publication series introduces two new aircraft propulsion concepts for the timeframe beyond 2030. This second part presents the free-piston composite cycle engine concept. It is composed of a gas turbine topped with a free-piston system. The latter is a self-powered gas generator in which the internal combustion process drives an integrated air compressor. Here, several free-piston engines replace the high-pressure core of the gas turbine. Through the ability to work at much higher temperatures and pressures, the overall system efficiency can be increased significantly, and fuel burn as well as CO_2 emissions reduce. The proposed free-piston composite cycle engine design is described in detail, and the sources of thermodynamic benefits are stated. Concrete engineering solutions consider the implementation into an aircraft. The free-piston design enables lower weight and size compared to a crankshaft-bound piston engine, as no mechanical transmission and lubrication system is required. The absence of a crankshaft and connecting rods eliminates reactive forces, reduces mechanical losses, and allows higher mean piston velocities. Facilitated through air lubrication, higher cylinder temperatures are viable. The reduction of heat losses enables cooling of the piston-cylinder with core fluid. The use of a sequential combustion chamber can enhance operability and tailor the production of NO_x in low-altitude operation. A discussion of emissions affecting the environment shows the potential to reduce the climate impact of aviation.
机译:认识到目前致力于航空环境影响的注意力,这一三部分出版系列为2030年推出了两个新的飞机推进概念。该第二部分呈现自由活塞复合循环发动机概念。它由具有自由活塞系统的燃气轮机组成。后者是一种自动气体发生器,其中内燃过程驱动集成的空气压缩机。在这里,几个自由活塞发动机更换燃气轮机的高压芯。通过在更高的温度和压力下工作的能力,整体系统效率可以显着增加,燃料燃烧以及CO_2排放减少。详细描述了所提出的自由活塞复合循环发动机设计,并说明了热力学效益的来源。具体的工程解决方案将实施实施到飞机中。与曲轴结合的活塞发动机相比,自由活塞设计能够较低的重量和尺寸,因为不需要机械传动和润滑系统。不存在曲轴和连杆消除了反应力,降低了机械损失,并允许更高的平均活塞速度。通过空气润滑促进,较高的圆柱温度可行。热损失的减少能够使活塞缸冷却具有芯液。顺序燃烧室的使用可以增强可操作性和量身定制的低空操作中NO_X的生产。对影响环境的排放的讨论表明,减少航空气候影响的潜力。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2021年第2期|021002.1-021002.8|共8页
  • 作者单位

    MTU Aero Engines AG Dachauer St. 665 Munich 80995 Germany;

    Advanced Propulsion Concepts Technology & Engineering Advanced Programs MTU Aero Engines AG Dachauer St. 665 Munich 80995 Germany;

    MTU Aero Engines AG Dachauer St. 665 Munich 80995 Germany;

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  • 正文语种 eng
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