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Investigation of Combustion Mode Control in a Mach 8 Shape-Transitioning Scramjet

机译:马赫8形变超燃冲压发动机中燃烧模式控制的研究

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摘要

Accelerating scramjet engines for an access to space system should optimally anchor dual-mode combustion at one end of the trajectory and supersonic combustion at the other. Conventionally, dual-mode combustion engines flamehold with physical obstructions, causing prohibitive losses at high speed. Past experiments of an airframe integrated scramjet engine at Mach 8 showed that dual-mode combustion was initiated and sustained with an unobstructed flowpath by varying the fueling rate. This flowfield is examined numerically to ascertain the fluid dynamic phenomena leading to the separated combustion modes. Two regimes of dual-mode combustion occurred above stoichiometric fueling: a separation-train-dominated flowfield downstream of the injectors and a flowfield dominated by a large separation upstream of the body-side injectors at higher fueling rates. The first mode occurs when two shocks combine and create a separation on the body-side wall that merges with the body-side injector wake separation, causing a train of separations. The second regime is from the upstream movement of combustion with increasing equivalence ratio: when combustion reaches the rear of the body-side injector, the near injector flow structure changes, allowing fuel and combustion to enter a large separation upstream. The performance of the different modes is explored.
机译:用于进入太空系统的超燃冲压发动机应在轨道的一端最佳地锚固双模燃烧,而在另一端则最佳地锚固超音速燃烧。常规地,双模式内燃机的火焰阻碍存在物理障碍,从而在高速下造成过高的损失。过去在8马赫的机身集成超燃冲压发动机的实验表明,通过改变加油速率,可启动双模燃烧并保持通畅的流路。对流场进行数值检查,以确定导致分离燃烧模式的流体动力学现象。在化学计量加油之上,发生了两种模式的双模式燃烧:喷油器下游以分离链为主的流场和体侧喷油器上游以较高的供油率由较大的分离为主的流场。当两种冲击结合并在车体侧壁上产生分离,并与车体侧喷油器尾流分离合并,从而导致一系列分离时,就会发生第一种模式。第二种情况是当量比增加时燃烧的上游运动:当燃烧到达体侧喷油器的后部时,近喷油器的流动结构发生变化,从而使燃料和燃烧进入上游较大的距离。探索了不同模式的性能。

著录项

  • 来源
    《AIAA Journal》 |2019年第7期|2977-2988|共12页
  • 作者单位

    Univ Queensland Ctr Hyperson Sch Mech & Min Engn Brisbane Qld 4072 Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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