Performance analysis of CD nozzle

被引:3
|
作者
Vadivelu, P. [1 ]
Senthilkumar, G. [2 ]
Sivaraj, G. [1 ]
Lakshmanan, D. [1 ]
Goud, Nayani Uday Ranjan [3 ]
机构
[1] Bannari Amman Inst Technol, Dept Aeronaut Engn, Sathyamangalam 638401, India
[2] Bannari Amman Inst Technol, Dept Mech Engn, Sathyamangalam 638401, India
[3] MLR Inst Technol, Dept Aeronaut Engn, Hyderabad 500043, India
关键词
Rocket nozzle; CD Nozzle; Back pressure; Performance characteristics; CFD Analysis;
D O I
10.1016/j.matpr.2022.05.148
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In engines, nozzles are used to convert pressure energy into kinetic energy. While converting, the velocity (momentum) of the flow increases. This process drives the engine to produce the required thrust force. Among the different nozzle shapes, only the convergent-divergent nozzle can convert a subsonic flow into a supersonic flow. Hence, it has a wide range of applications in Aeronautics. But it requires the correct pressure difference between entry and exit to get the optimum performance. This paper covers the performance analysis of the chosen rocket nozzle (convergent-divergent nozzle) under various operating conditions. Initially, an already existing rocket nozzle was chosen and its operating conditions were identified. Then, for the chosen geometry some hand calculations were made to predict the critical backpressure conditions. Then by keeping the same identified operating input condition (80 bar at the inlet), a two-dimensional Computational Fluid Dynamics (CFD) analysis was performed for various backpressure conditions. From the analysis, the nozzle flow characteristics under various back pressures were plotted in a graph and identified the impact of backpressure variations on the performance of the chosen rocket nozzle. A normal shock will appear in the chosen nozzle over the range of back-pressures 13.21 to 79.64 bar. To get a perfect expansion, the back-pressure should be 0.864 bar. However, the chosen nozzle will deliver supersonic flow for all back pressures below 13.21 bar. Copyright (C) 2022 Elsevier Ltd. All rights reserved.
引用
收藏
页码:620 / 631
页数:12
相关论文
共 50 条
  • [1] Performance analysis of CD nozzle
    Vadivelu, P.
    Senthilkumar, G.
    Sivaraj, G.
    Lakshmanan, D.
    Goud, Nayani Uday Ranjan
    MATERIALS TODAY-PROCEEDINGS, 2022, 64 : 620 - 631
  • [2] Simulation of Converging-Diverging (CD) Ejector Nozzle and Its Performance Analysis
    Jacob, Chrystella
    Sasipraba, T.
    Jayaraman, Lilly Mercy
    Bedford, Sanjay Paul
    Ganesh, S.
    3RD INTERNATIONAL CONFERENCE ON FRONTIERS IN AUTOMOBILE AND MECHANICAL ENGINEERING (FAME 2020), 2020, 2311
  • [3] Chemical kinetics analysis for nozzle performance
    Sun, De-Chuan
    Chen, Jie
    Lin, Qing-Guo
    Tuijin Jishu/Journal of Propulsion Technology, 2003, 24 (03): : 222 - 224
  • [4] Finite Element Analysis of Nozzle Position on Nozzle Array Fluidic Gyroscope Performance
    Chen, Jingbo
    Piao, Linhua
    Fan, Zhiwei
    MATERIALS PROCESSING AND MANUFACTURING III, PTS 1-4, 2013, 753-755 : 2713 - +
  • [5] Analysis of steam ejector performance with corrugated nozzle
    Qu, Xiaohang
    Tian, Maocheng
    Luo, Lincong
    Leng, Xueli
    Zhongguo Dianji Gongcheng Xuebao/Proceedings of the Chinese Society of Electrical Engineering, 2014, 34 (35): : 6255 - 6262
  • [6] NOZZLE PERFORMANCE
    JOHNSON, DR
    PEST CONTROL, 1979, 47 (05) : 32 - 32
  • [7] Analysis of Vibrational Performance of A Piezoelectric Micropump with Diffuse/Nozzle Microchannel
    Yanfang Guan
    Xiang Li
    NanotechnologyandPrecisionEngineering, 2018, 1 (02) : 138 - 144
  • [8] Analysis of Vibrational Performance of A Piezoelectric Micropump with Diffuse/Nozzle Microchannel
    Guan, Yanfang
    Li, Xiang
    NANOTECHNOLOGY AND PRECISION ENGINEERING-NAMI JISHU YU JINGMI GONGCHENG, 2018, 1 (02): : 138 - 144
  • [9] Design and performance analysis of supercritical carbon dioxide supersonic nozzle
    Zhao R.
    Li Y.
    Zhao Y.
    Wu J.
    Zhao, Yuxin (zyx_nudt@163.com), 1600, Journal of Propulsion Technology (45):
  • [10] Numerical analysis of base bleed effect on aerospike nozzle performance
    Li, J.
    Guo, T.
    Ma, J.
    Tuijin Jishu/Journal of Propulsion Technology, 2001, 22 (01): : 15 - 18