火箭技术

双燃烧室冲压发动机三维隔板后缘构型数值研究

  • 于江飞 ,
  • 晏至辉 ,
  • 刘卫东
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  • 国防科学技术大学航天与材料工程学院,长沙 410073

于江飞(1984-),男,河南济源人,博士研究生,研究方向:航空宇航推进理论与工程。

收稿日期: 2009-08-28

  网络出版日期: 2025-05-28

Numerical Study for Three-dimensional Clapboard Models in Dual Combustor Ramjet

  • YU Jiangfei ,
  • YAN Zhihui ,
  • LIU Weidong
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  • College of Aerospace and Material Engineering, National University of Defense Technology, Changsha 410073, China

Received date: 2009-08-28

  Online published: 2025-05-28

摘要

文中对双燃烧室冲压发动机超燃室中多种三维隔板后缘构型对超声速混合层的影响进行了数值研究,并详细分析了较优构型的冷流和燃烧流场。隔板后缘为交错构型时诱导的流向涡大大促进了混合层增长,楔块顶点间隔越大,楔角增大,流向涡演化发展得越快。同时详细分析了较优隔板后缘构型的冷流流场结构和其扩展构型的三维燃烧流场结构,在计算区域后段,燃烧流场混合效果比冷流流场的略有增加。

本文引用格式

于江飞 , 晏至辉 , 刘卫东 . 双燃烧室冲压发动机三维隔板后缘构型数值研究[J]. 弹箭与制导学报, 2010 , 30(4) : 108 -112 . DOI: 10.15892/j.cnki.djzdxb.2010.04.013

Abstract

Numerical simulations are conducted for the effect of diverse models of three-dimensional clapboard structures on the growth of supersonic mixing layer in DCR's supersonic combustor. The flowfield for the most effective model is analyzed in detail. In the case for interlaced back edges, derivational streamwise eddies greatly accelerate mixing layer. The wedge with a larger vertex interval and a bigger angle develops streamwise eddies more effectively. Development of streamwise eddies and locations of reacting regions are gained through detailed investigation of the flowfield of the most effective model and its expanded one. Combustion plays a little positive role in mixing in back segment of the calculating domain where there is the weak combustion.

参考文献

[1]
张新宇. 高超声速吸气式发动机的研究进展与发展趋势[J]. 力学进展, 2001, 31 (3): 478- 480.
[2]
Paul J, Waltrup, et al. History of ramjet and scramjet propulsion development for U. S. navy missiles[R]. Johns Hopkins APL Technical Digest, 1997, 18 (2).
[3]
Billig FS, Waltrup PJ, Stockbridge RD. Integral-rocket dual-combustion ramjets: a new propulsion concept[J]. Journal of Spacecraft and Rockets, 1980, 17 (5): 416- 424.
[4]
于江飞,晏至辉,刘卫东. 双燃烧室冲压发动机为动力的高超声速飞行器[J]. 导弹与航天运载技术, 2008 (5): 26- 30.
[5]
Masatoshi Kodera, Tetsuji Sunami, Frithjof Scheel. Numerical study on the supersonic mixing enhancement using streamwise vortices, AIAA 2002 5117[R]. 2002.
[6]
Tetsuji Sunami, et al. Experimental study of strut injectors in a supersonic combustor using OH-PLIF, AIAA 2005-3304[R]. 2005.
[7]
Movik Gregory A, Bowles Jeffrey V, Huynh Loc C. Analysis of a hydrocarbon scramjet with augmented pre-burning, AIAA 92-3425[R]. 1992.
[8]
王春,司徒明,马继华,等. 高温富油燃气超声速燃烧数值模拟[J]. 推进技术, 2000, 21 (2): 60- 63.
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