Numerical investigation of thermochemical non-equilibrium effects in Mach 10 scramjet nozzle

被引:0
|
作者
Wang, J.P. [1 ]
Zhuo, C.F. [1 ]
Dai, C.L. [1 ]
Sun, B. [1 ]
机构
[1] School of Mechanical and Engineering, Nanjing University of Science and Technology, Nanjing,210094, China
来源
关键词
Aerodynamics - Chemical reactions - Flow fields - Gases - Hydrocarbons - Nozzles - Ramjet engines - Relaxation processes - Structural design;
D O I
暂无
中图分类号
学科分类号
摘要
High-Temperature non-equilibrium effects are prominent in scramjet nozzle flows at high Mach numbers. Hence, the thermochemical non-equilibrium gas model incorporating the vibrational relaxation process of molecules in the hydrocarbon-Air reaction is developed to numerically simulate the flow of a hydrocarbon fuel scramjet nozzle at Mach 10. Besides, the results computed by the models of the thermally perfect gas, chemically non-equilibrium gas, and thermally non-equilibrium chemically frozen gas are applied for comparative studies. Results indicate that chemical non-equilibrium effects are more significant for the flow-field structure and parameters compared to thermal non-equilibrium effects. Meanwhile, vibrational relaxation and chemical reactions interact in the flow-field. The heat released from the chemical reactions in the flow-field of the thermochemical non-equilibrium gas model makes the thermal non-equilibrium effects weaker compared to the thermally non-equilibrium chemically frozen gas model; the chemical reactions in the thermochemical non-equilibrium gas model are more intense than in the chemically non-equilibrium gas model. Due to the slow relaxation of vibrational energy, the thermal non-equilibrium models predicted nozzle thrust lower than the thermal equilibrium models by approximately 1.11% to 1.33%; when considering the chemical reactions, the chemical non-equilibrium models predicted nozzle thrust higher than the chemical frozen models by approximately 7.30% to 7.54%. Hence, the structural design and performance study of the high Mach numbers scramjet nozzle must consider thermochemical non-equilibrium effects. © The Author(s), 2024. Published by Cambridge University Press on behalf of Royal Aeronautical Society.
引用
收藏
相关论文
共 50 条
  • [31] Effects of nonuniform Mach-number entrance on scramjet nozzle flowfield and performance
    Zhang, Pu
    Xu, Jinglei
    Quan, Zhibin
    Mo, Jianwei
    ACTA ASTRONAUTICA, 2016, 129 : 201 - 210
  • [32] AN INVESTIGATION OF NON-EQUILIBRIUM EFFECTS IN THERMAL ARGON PLASMAS
    TIMMERMANS, CJ
    ROSADO, RJ
    SCHRAM, DC
    ZEITSCHRIFT FUR NATURFORSCHUNG SECTION A-A JOURNAL OF PHYSICAL SCIENCES, 1985, 40 (08): : 810 - 825
  • [33] Thermochemical non-equilibrium and electromagnetic effects of double-cone in hypervelocity flow
    Luo, Shi-chao
    Wu, Li -yin
    Chang, Yu
    Li, Xian
    AEROSPACE SCIENCE AND TECHNOLOGY, 2023, 132
  • [34] High Enthalpy Non-Equilibrium Expansion Effects in Turbulent Flow of the Conical Nozzle
    Shen, Junmou
    Shao, Zongjie
    Ji, Feng
    Chen, Xing
    Lu, Hongbo
    Ma, Handong
    AEROSPACE, 2023, 10 (05)
  • [35] CALCULATION OF THE RELAXATION OF NON-EQUILIBRIUM GAS OR PLASMA IN THE NOZZLE
    NECHESOV, OP
    IZVESTIYA VYSSHIKH UCHEBNYKH ZAVEDENII FIZIKA, 1979, (07): : 99 - 104
  • [36] Non-equilibrium condensation of water vapor in sonic nozzle
    Wang, Chao, 1600, Elsevier Ltd (71):
  • [37] Non-equilibrium condensation of water vapor in sonic nozzle
    Ding, Hongbing
    Wang, Chao
    Chen, Chao
    APPLIED THERMAL ENGINEERING, 2014, 71 (01) : 324 - 334
  • [38] On the non-equilibrium kinetics and heat transfer in nozzle flows
    Kustova, EV
    Nagnibeda, EA
    Alexandrova, TY
    Chikhaoui, A
    CHEMICAL PHYSICS, 2002, 276 (02) : 139 - 154
  • [39] Numerical analysis of hypersonic thermochemical non-equilibrium environment for an entry con?guration in ionized ?ow
    Jianlong YANG
    Meng LIU
    Chinese Journal of Aeronautics, 2019, 32 (12) : 2641 - 2654
  • [40] Effects of Oxygen Enrichment on Supersonic Combustion in a Mach 10 Scramjet
    Moura, Augusto F.
    Gibbons, Nicholas
    Wheatley, Vincent
    Jahn, Ingo
    AIAA JOURNAL, 2021, 59 (11) : 4556 - 4568