FLUIDIC INJECTION ANGLE IMPACT ON THRUST VECTORING USING COMPUTATIONAL FLUID DYNAMICS ANALYSIS

被引:0
|
作者
Kumar V. [1 ]
Rohit [2 ]
Shukla H. [1 ]
Gaurav K. [1 ]
机构
[1] Department of Aerospace Engineering, University of Petroleum and Energy Studies, Dehradun
关键词
Aero jet engine shock vector control; CD nozzle; Fluidic injection angle; Nozzle pressure ratio; Pitch thrust vector; Secondary pressure ratio;
D O I
10.1615/InterJFluidMechRes.2021037918
中图分类号
学科分类号
摘要
As shock vectoring evolved as a major option of thrust vector control in applications such as jet engine exhaust systems, the computational study (with the validation of experimental data) of injecting the secondary flow into the divergent section of convergent-divergent nozzle has become an attractive option to investigate its optimum performance by increasing the number of secondary injection ports with variation in injection angles. This has led us toward the use of multiple injection ports with varying injection angles for the current study. To perform the simulation of internal flow in the nozzle, a finite volume-based implicit computational fluid dynamics solver was used. The study aims to see the response of the injection angle on the pitch thrust vector using shock vector control. One equation turbulence model of Spalart-Allmaras was used for its precision and robustness, and its need for less computational time. Nozzle performance has been studied at nozzle pressure ratios of 4 and 6. The secondary pressure ratio varies as 0.4, 0.7, and 1. A comparative study of different configurations of multiple injection ports has been done at different injection angles. Shifting of injection slot from nozzle exit to near throat decreases the thrust vectoring capability of the nozzle. The injection angle varies from 60° to 120° concerning the flow direction in the nozzle. Increment in the injection angle has a significant increasing effect on the pitch thrust vector angle. © 2021 Begell House Inc.. All rights reserved.
引用
收藏
页码:41 / 53
页数:12
相关论文
共 50 条
  • [21] Numerical simulation of aerodynamic effects of secondary injection positions on fluidic thrust vectoring nozzle
    Li, Zhi-Jie
    Wang, Zhan-Xue
    Cai, Yuan-Hu
    Hangkong Dongli Xuebao/Journal of Aerospace Power, 2008, 23 (09): : 1603 - 1608
  • [22] APPLICATION OF COMPUTATIONAL FLUID-DYNAMICS TO PITCH YAW THRUST VECTORING SPHERICAL CONVERGENT FLAP NOZZLES
    SYED, SA
    ERHART, JJ
    KING, EW
    JOURNAL OF PROPULSION AND POWER, 1992, 8 (04) : 799 - 805
  • [23] Fourier Mode Decomposition of Unsteady Flows in a Single Injection Port Fluidic Thrust Vectoring Nozzle
    Jianming Wang
    Siqi Luan
    Jianyong Zhu
    Xiaodong Mao
    Junqiang Wu
    International Journal of Aeronautical and Space Sciences, 2021, 22 : 223 - 238
  • [24] Fourier Mode Decomposition of Unsteady Flows in a Single Injection Port Fluidic Thrust Vectoring Nozzle
    Wang, Jianming
    Luan, Siqi
    Zhu, Jianyong
    Mao, Xiaodong
    Wu, Junqiang
    INTERNATIONAL JOURNAL OF AERONAUTICAL AND SPACE SCIENCES, 2021, 22 (02) : 223 - 238
  • [25] Analysis of the Optimum Tapering Angle in Microanastomosis Using Computational Fluid Dynamics
    Yagi, Shunjiro
    Ikuta, Kento
    Miyazaki, Shohei
    Umeda, Ryunosuke
    Kanayama, Haruka
    Hifny, Mahmoud A.
    Morita, Maki
    Nakagaki, Makoto
    Tanabe, Makoto
    Suyama, Yoshiko
    Fukuoka, Kohei
    YONAGO ACTA MEDICA, 2022, 65 (04) : 296 - 302
  • [26] Impact of the Angle of External Flow on The Performance of Counterflow Thrust Vectoring Nozzle
    Liu Zhao-miao
    Chen Chuan
    2013 INTERNATIONAL CONFERENCE ON MECHANICAL AND AUTOMATION ENGINEERING (MAEE 2013), 2013, : 52 - 55
  • [27] 3D Computational Study of Thrust Vectoring using Bypass Mass Injection in a Propulsion Nozzle
    Nafi, Muhammad Abdun
    Hasana, A. B. M. Toufique
    8TH BSME INTERNATIONAL CONFERENCE ON THERMAL ENGINEERING, 2019, 2121
  • [28] Experimental and computational investigation into the use of co-flow fluidic thrust vectoring on a small gas turbine
    Department of Aerospace Engineering, Sharif University of Technology, Tehran, Iran
    不详
    Aeronautical Journal, 2008, 112 (1127): : 17 - 25
  • [29] Experimental and computational investigation into the use of co-flow fluidic thrust vectoring on a small gas turbine
    Banazadeh, A.
    Saghafi, F.
    Ghoreyshi, M.
    Pilidis, P.
    AERONAUTICAL JOURNAL, 2008, 112 (1127): : 17 - 25
  • [30] A Computational Study of Thrust Vectoring Control Using Dual Throat Nozzle
    Choon Sik Shin
    Heuy Dong Kim
    Toshiaki Setoguchi
    Shigeru Matsuo
    Journal of Thermal Science, 2010, 19 (06) : 486 - 490