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The hypersonic environment: Required operating conditions and design challenges

机译:高超音速环境:所需的工作条件和设计挑战

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摘要

Hypersonic flight powered by airbreathing engines offers the potential for faster response time at long ranges, and reduced cost for access-to-space. In the present paper the operating environment of typical hypersonic vehicles are discussed, including results for the radiation equilibrium wall temperature of external vehicle surfaces and the flow properties through three sample engines spanning the range of hydrocarbon-fueled Mach 4-8 flight and hydrogen-fueled flight at speeds up to Mach 17. Flow conditions at several locations through the sample engines were calculated to provide indications of the required operating flow environment. Additional system consideration such a seals, joints, vehicle integration and in-service engineering are addressed.
机译:由呼吸发动机提供动力的高超音速飞行提供了在较远距离上更快响应时间的潜力,并降低了进入太空的成本。在本文中,讨论了典型的高超音速飞行器的运行环境,包括外部车辆表面的辐射平衡壁温的结果以及通过三个采样引擎的流动特性的结果,这些引擎跨越了以碳氢燃料为燃料的4-8马赫飞行和以氢为燃料的飞行范围可以以高达17马赫的速度飞行。计算了通过采样引擎在多个位置的流动状况,以提供所需的工作流动环境的指示。解决了其他系统考虑因素,例如密封件,接头,车辆集成和在役工程。

著录项

  • 来源
    《Journal of Materials Science 》 |2004年第19期| 5915-5924| 共10页
  • 作者单位

    The Johns Hopkins University Applied Physics Laboratory;

    The Johns Hopkins University Applied Physics Laboratory;

    The Johns Hopkins University Applied Physics Laboratory;

    The Johns Hopkins University Applied Physics Laboratory;

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  • 原文格式 PDF
  • 正文语种 eng
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