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Trends in the development of detonation engines for high-speed aerospace aircrafts and the problem of triple configurations of shock waves. Part II - Research of counterpropagating shock waves and triple shock wave configurations

机译:高速航空航天飞机爆轰发动机发展的趋势及冲击波三重配置问题。第二部分 - 对逆产冲击波和三重冲击波配置的研究

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摘要

The paper deals with current issues of the interference theory development of gas-dynamic discontinuities as applied to a problem of propulsion refinement for the air-spacecrafts, designed for hypersonic flight speeds. In the first part of the review we have presented the history of detonation study and different concepts of detonation engines, as well as air intakes designed for hypersonic flight speeds. The second part provides an overview of works on the interference theory development for gas-dynamic discontinuities. We report about classification of the gas-dynamic discontinuities, shock wave propagation, shock-wave structures and triple configurations of shock waves. We have shown that many of these processes are accompanied by a hysteresis phenomenon, there are areas of ambiguity; therefore, in the design of engines and air intakes optimal shock-wave structures should be provided and their sustainability should be ensured. Much attention has recently been given to the use of the air intakes in the shock-wave structures with the rereflection of shock waves and the interference of shock waves in the opposite directions. This review provides increased focus on it, contains references to landmark works, the last calculated and experimental results. Unfortunately, foreign surveys missed many landmark works of the Soviet and Russian researchers, as they were not published in English. At the same time, it was the Soviet school of gas dynamics that has formulated the interference theory of gas-dynamic discontinuities in its present form. To fill this gap is one of this review scopes. The review may be recommended for professionals, engineers and scientists working in the field of aerospace engineering.
机译:本文涉及流动理论的现有问题,气体通断的推进改造问题适用于空气 - 航天器的出版物,专为超音速飞行速度而设计。在审查的第一部分,我们提出了爆炸研究的历史和不同的爆炸发动机的概念,以及为超音速飞行速度设计的进气口。第二部分提供了对气体动态不连续性的干扰理论发展的工程的概述。我们报告了气体动态不连续,冲击波传播,冲击波结构和冲击波三重配置的分类。我们已经表明,许多这些过程伴随着滞后现象,有歧义的领域;因此,在发动机的设计中,应提供最佳冲击波结构,并且应确保其可持续性。最近对冲击波结构中的空气摄入量进行了很多关注,通过反射波浪和冲击波在相反方向上的冲击。该审查提供了更高的关注,包含对地标工作的引用,最后计算和实验结果。不幸的是,外国调查错过了苏联和俄罗斯研究人员的许多地标作品,因为他们没有用英语发表。与此同时,它是苏联气体动态学院,它以目前的形式制定了气体动态不连续性的干扰理论。为了填补这个差距是这个评论范围之一。在航空航天工程领域工作的专业人士,工程师和科学家可能会建议审查。

著录项

  • 作者

    P.V. Bulat; P.V. Denissenko;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 rus;eng
  • 中图分类

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