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Single-stage hypersonic vehicle featuring advanced swirl combustion

机译:具有先进涡流燃烧功能的单级高超音速飞行器

摘要

A single-stage hypersonic vehicle is comprised of a low-speed and a high-speed propulsion system. The low-speed propulsion system propels the single-stage vehicle to a threshold velocity, after which the high-speed propulsion system then takes over. The low-speed propulsion system includes a combined-cycle engine featuring a swirl generator that is integrated into a turbojet engine to provide a compact turbojet and swirl afterburner-ramjet propulsion system. The high-speed propulsion system includes a hypersonic engine that is operable at the threshold takeover velocity and beyond. In various embodiments, the high-speed propulsion system comprises a scramjet, rocket, or scramjet/rocket engine depending requirements. Benefits of the swirl generator design include its ability to rapidly and efficiently atomize, vaporize, mix and burn the fuel and oxidizer for the low speed propulsion system, significantly reduce length, weight, cooling requirements and complexity for both propulsion systems, while maintaining high propulsion performance and reducing propulsion and launch costs.
机译:单级高超音速飞行器由低速和高速推进系统组成。低速推进系统将单级车辆推进到阈值速度,然后由高速推进系统接管。低速推进系统包括一个联合循环发动机,该发动机的涡流发生器集成到涡轮喷气发动机中,以提供紧凑的涡轮喷气和涡流加力燃烧室-冲压喷气发动机推进系统。高速推进系统包括超音速发动机,该超音速发动机可在阈值接管速度及以上的速度下操作。在各种实施例中,根据要求,高速推进系统包括超燃冲压发动机,火箭发动机或超燃冲压发动机/火箭发动机。涡流发生器设计的优势包括其能够为低速推进系统快速有效地雾化,汽化,混合和燃烧燃料和氧化剂的能力,显着减少两个推进系统的长度,重量,冷却要求和复杂性,同时保持高推进力性能并降低推进和发射成本。

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