Heat Flux and Pressure Reduction Using Aerospike and Counterflowing Jet on Complex Hypersonic Flow

被引:0
|
作者
Juhong Jia
Yijie Zhang
机构
[1] Beijing Institute of Technology,School of Aerospace Engineering
[2] Shaoxing University,Department of Shangyu
关键词
Hypersonic; Flow; Heat transfer; Aerospike; Counterflowing; Computational fluid dynamics;
D O I
暂无
中图分类号
学科分类号
摘要
A numerical study on a reduction of aerodynamic heating and pressure by an active or passive control strategy has been conducted. Three-dimensional double ellipsoid models with aerospike or opposing jet are investigated. In numerical analysis, three-dimensional Navier–Stokes equations are solved by a finite-volume method, and hybrid LES/RANS turbulence model is used. The results show that the use of aerospike or counterflowing jet bring about an obvious decrease in pressure and heat flux values of the nose. However, both the pressure and heat flux appears an increase on body surface either for aerospike model or opposing jet model. For aerospike model, the aerospike will push the bow shock standing away from the first ellipsoid and creates an elliptical shaped recirculation zone, in which the pressure and heat flux keep at a low level. After that, the shear layer will reattaches to the shoulder and creates the peak value of the heat flux and pressure. For opposing jet model, the counterflowing jet flows out the nozzle and pushes the bow shock away from the nose. Meanwhile, the jet flow is pushed back by the freestream and reattached to the ellipsoid shoulder surface. Then, the heat flux and pressure peaks are created by reattachment. These separation and reattachment lead to the ups and downs of the surface pressure and heat flux.
引用
收藏
页码:337 / 346
页数:9
相关论文
共 50 条
  • [31] A study of performance parameters on drag and heat flux reduction efficiency of combinational novel cavity and opposing jet concept in hypersonic flows
    Sun, Xi-wan
    Guo, Zhen-yun
    Huang, Wei
    Li, Shi-bin
    Yan, Li
    ACTA ASTRONAUTICA, 2017, 131 : 204 - 225
  • [32] Influence of Pressure of Jet on Hypersonic Flow Field Modulation Transfer Function
    Zhao Xin-hai
    Yi Shi-he
    Ding Hao-lin
    Tian-ci, Ou-Yang
    Shi Yang
    ACTA PHOTONICA SINICA, 2019, 48 (10)
  • [33] Mach Number Impact on Heat Flux and Pressure Distributions of a Hypersonic Flow over Combined Gap/Step Geometries
    Leite, Paulo H. M.
    Santos, Wilson F. N.
    PROCEEDINGS OF THE 29TH INTERNATIONAL SYMPOSIUM ON RAREFIED GAS DYNAMICS, 2014, 1628 : 176 - 184
  • [34] Assessment on jet direction effect on drag and heat reduction efficiency for hypersonic vehicles
    Zhu, Liang
    Chen, Xiong
    Tian, Xiaotao
    Song, Jun
    Li, Hao
    Sun, Shan
    AEROSPACE SCIENCE AND TECHNOLOGY, 2020, 106
  • [35] Numerical study on heat and drag reduction by transpiration in hypersonic flow
    Zhao, Yi Pu
    Huang, Haiming
    Wu, Qian
    Wang, Xinmeng
    INTERNATIONAL JOURNAL OF NUMERICAL METHODS FOR HEAT & FLUID FLOW, 2023, 33 (08) : 2815 - 2852
  • [36] Combination of counterflow jet and cavity for heat flux and drag reduction
    Sharma, Kartikey
    Nair, Manoj T.
    PHYSICS OF FLUIDS, 2020, 32 (05)
  • [37] Heat flux prediction for hypersonic flows using a stabilized formulation
    David Codoni
    Ahmed Bayram
    Manoj Rajanna
    Craig Johansen
    Ming-Chen Hsu
    Yuri Bazilevs
    Artem Korobenko
    Computational Mechanics, 2024, 73 : 419 - 426
  • [38] Heat flux prediction for hypersonic flows using a stabilized formulation
    Codoni, David
    Bayram, Ahmed
    Rajanna, Manoj
    Johansen, Craig
    Hsu, Ming-Chen
    Bazilevs, Yuri
    Korobenko, Artem
    COMPUTATIONAL MECHANICS, 2024, 73 (02) : 419 - 426
  • [39] Experimental investigation on drag and heat flux reduction in supersonic/hypersonic flows: A survey
    Wang, Zhen-guo
    Sun, Xi-wan
    Huang, Wei
    Li, Shi-bin
    Yan, Li
    ACTA ASTRONAUTICA, 2016, 129 : 95 - 110
  • [40] Numerical study of lateral coolant jet on heat reduction over nose cone with double-aerodome at hypersonic flow
    Ghanbari, Mehdi
    Maddah, Soroush
    Alinejad, Javad
    SCIENTIFIC REPORTS, 2022, 12 (01)