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Scramjet Performance with Nonuniform Flow and Swept Nozzles

机译:具有非均匀流动和后掠喷嘴的Scramjet性能

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Numerical simulations are presented that compare the specific impulse of a generic inlet-fueled uniform-compression and nonuniform-compression scramjet over the flight Mach number range of 7-12 with a constant freestream dynamic pressure trajectory of 100 kPa. Both engine configurations have identical inlet contraction ratio, inlet to nozzle area ratio, and combustor and nozzle geometries. The results show that the specific impulse in the nonuniform-compression scramjet is higher than the uniform-compression scramjet at each flight condition. The increase in specific impulse for Mach 8, 9, 10, 11, and 12 are 165, 178, 96, 74, and 15 s, respectively. Both the uniform- and nonuniform-compression engines unstarted at the Mach 7 condition. In addition, two three-dimensional swept-nozzle configurations (45 and 60 deg) are integrated into the nonuniform-compression engine to investigate an idea of coupling the nonuniform flow with a nonuniform expansion nozzle to improve performance. The 45 deg results show no change in specific impulse at Mach 8-11 and a 50 s improvement at Mach 12. The 60 deg configuration has less specific impulse at each flight condition, except Mach 12. The thermal loads are reduced by 15 and 30% for the 45 and 60 deg configurations at each flight condition. The findings provide new insight into how nonuniform compression with swept nozzles can provide an additional degree of freedom in the design of fixed-geometry scramjets that have robust performance over a range of flight conditions.
机译:提出了数值模拟,该模拟比较了在7-12的飞行马赫数范围内,具有100kPa的恒定自由流动压轨迹的通用进气加油的均匀压缩和非均匀压缩超燃冲压发动机的比冲。两种发动机配置均具有相同的进气口收缩率,进气口与喷嘴的面积比以及燃烧室和喷嘴的几何形状。结果表明,在每个飞行条件下,非均匀压缩超燃冲压发动机的比冲都高于均匀压缩超燃冲压发动机。 8、9、10、11和12马赫的比冲增加分别为165、178、96、74和15 s。均压和非均压引擎均在7马赫条件下未启动。另外,将两个三维扫掠喷嘴配置(45度和60度)集成到非均匀压缩引擎中,以研究将非均匀流动与非均匀膨胀喷嘴耦合以提高性能的想法。 45度的结果显示,在8-11马赫时的比冲没有变化,在12马赫的情况下改善了50 s。除了12马赫之外,在每种飞行条件下60度的配置都有较少的比冲。热负荷减少了15和30每种飞行条件下45度和60度配置的%。这些发现为使用后掠喷嘴的非均匀压缩如何在固定几何形状超燃冲压发动机的设计中提供额外的自由度提供了新的见解,该设计在各种飞行条件下均具有强劲的性能。

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