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On the optimum cruise speed of a hypersonic aircraft

机译:关于高超音速飞机的最佳巡航速度

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Some preliminary results that have been obtained in the frame of the SANGER system studies are presented. SANGER is a West German study project and technology reference system for a future advanced space transportation system. The first stage of this vehicle is a hypersonic aircraft from which a passenger version could be derived. The analyses indicate that a speed of Mach 4.4 will lead to maximum seat mileage per day as well as to minimum propellant consumption. The speed-related cruise altitude of 24500 m or 80000 ft is above the most sensitive ozone layer and high enough to produce only one-third of the noise ground pressure which is considered as the acceptable limit (1 lb/ft/sup 2/) over populated areas. The aircraft surface temperatures at these conditions can still be managed by a conventional titanium alloy structure with special provisions only at the leading edge and the engine inlets. The potential route structure and economics of such an aircraft are discussed.
机译:介绍了一些在SANGER系统研究框架中获得的初步结果。 SANGER是西德研究项目和技术参考系统,用于未来的先进太空运输系统。该车辆的第一阶段是高超音速飞机,从中可以得出乘客的版本。分析表明,速度为4.4马赫时,将导致每天最大的座位行驶里程以及最小的推进剂消耗。与速度有关的巡航高度为24500 m或80000 ft,位于最敏感的臭氧层之上,且高度足以产生仅三分之一的噪声地面压力,这被认为是可接受的极限值(1 lb / ft / sup 2 /)在人口稠密的地区。在这种情况下,飞机表面温度仍然可以通过常规的钛合金结构进行管理,只有在前缘和发动机进气口才有特殊规定。讨论了这种飞机的潜在航线结构和经济性。

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