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Predicted Performance of a Thrust-Enhanced SR-71 Aircraft with an External Payload

机译:具有外部有效载荷的推力增强型SR-71飞机的预测性能

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摘要

NASA Dryden Flight Research Center has completed a preliminary performance analysis of the SR-71 aircraft for use as a launch platform for high-speed research vehicles and for carrying captive experimental packages to high altitude and Mach number conditions. Externally mounted research platforms can significantly increase drag, limiting test time and, in extreme cases, prohibiting penetration through the high-drag, transonic flight regime. To provide supplemental SR-71 acceleration, methods have been developed that could increase the thrust of the J58 turbojet engines. These methods include temperature and speed increases and augmentor nitrous oxide injection. The thrust-enhanced engines would allow the SR-71 aircraft to carry higher drag research platforms than it could without enhancement. This paper presents predicted SR-71 performance with and without enhanced engines. A modified climb-dive technique is shown to reduce fuel consumption when flying through the transonic flight regime with a large external payload. Estimates are included of the maximum platform drag profiles with which the aircraft could still complete a high-speed research mission. In this case, enhancement was found to increase the SR-71 payload drag capability by 25 percent. The thrust enhancement techniques and performance prediction methodology are described.
机译:美国国家航空航天局Dryden飞行研究中心已经完成了SR-71飞机的初步性能分析,该飞机将用作高速研究飞行器的发射平台,并在高空和马赫数条件下携带圈定的实验包。外部安装的研究平台会显着增加阻力,限制测试时间,在极端情况下,禁止穿透高阻力跨音速飞行状态。为了提供补充的SR-71加速度,已经开发出可以增加J58涡轮喷气发动机推力的方法。这些方法包括温度和速度增加以及增强剂一氧化二氮注入。推力增强型发动机将使SR-71飞机具有比没有增强功能时更高的阻力研究平台。本文介绍了带或不带增强引​​擎的SR-71预测性能。改进的爬升潜水技术被证明可以减少带有较大外部有效载荷的跨音速飞行状态下的燃油消耗。估计值包括飞机仍可完成高速研究任务的最大平台阻力曲线。在这种情况下,发现增强功能使SR-71的有效载荷阻力能力提高了25%。描述了推力增强技术和性能预测方法。

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    Conners, Timothy R.;

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  • 年度 1997
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