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Low Noise Cruise Efficient Short Take-Off and Landing Transport Vehicle Study

机译:低噪声巡航高效短距起降运输车辆研究

摘要

The saturation of the airspace around current airports combined with increasingly stringent community noise limits represents a serious impediment to growth in world aviation travel. Breakthrough concepts that both increase throughput and reduce noise impacts are required to enable growth in aviation markets. Concepts with a 25 year horizon must facilitate a 4x increase in air travel while simultaneously meeting community noise constraints. Attacking these horizon issues holistically is the concept study of a Cruise Efficient Short Take-Off and Landing (CESTOL) high subsonic transport under the NASA's Revolutionary Systems Concepts for Aeronautics (RSCA) project. The concept is a high-lift capable airframe with a partially embedded distributed propulsion system that takes a synergistic approach in propulsion-airframe-integration (PAI) by fully integrating the airframe and propulsion systems to achieve the benefits of both low-noise short take-off and landing (STOL) operations and efficient high speed cruise. This paper presents a summary of the recent study of a distributed propulsion/airframe configuration that provides low-noise STOL operation to enable 24-hour use of the untapped regional and city center airports to increase the capacity of the overall airspace while still maintaining efficient high subsonic cruise flight capability.
机译:当前机场周围空域的饱和,加上日益严格的社区噪声限制,严重阻碍了世界航空旅行的增长。需要突破性的概念,既要提高吞吐量又要减少噪声影响,以实现航空市场的增长。视距为25年的概念必须促进航空旅行增加4倍,同时满足社区的噪音限制。在NASA的“航空革命性系统概念”(RSCA)项目下,对巡航效率高的短程起降(CESTOL)高亚音速运输的概念研究进行了全面的攻关。该概念是具有部分嵌入的分布式推进系统的高升空能力飞机架,通过将机身和推进系统完全集成在一起,从而实现低噪声短距离起飞的优势,从而在推进飞机-机身集成(PAI)中采用了协同方法。起降(STOL)操作和高效的高速巡航。本文介绍了最近对分布式推进/机体配置的研究摘要,该配置提供了低噪声的STOL操作,可以在未开发的地区和市中心机场进行24小时使用,以增加整个空域的容量,同时仍然保持高效的高空亚音速巡航飞行能力。

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