Metalized solid propellant combustion under high-speed blowing flow

被引:0
|
作者
Krainov Alexey
Poryazov Vasiliy
Moiseeva Ksenia
Krainov Dmitry
机构
[1] Tomsk State University,Department of Mathematical Physics
[2] Tomsk Polytechnic University,School of Energy & Power Engineering
来源
Journal of Mechanical Science and Technology | 2020年 / 34卷
关键词
Combustion; Burning rate; Blowing condition; Erosion effect; Metalized solid propellant; Aluminum particle additive;
D O I
暂无
中图分类号
学科分类号
摘要
This study presents a mathematical model and a calculation method of the nonstationary combustion rate of metalized solid propellant (nitroglycerin powder with aluminum particle additives) under blowing conditions. The combustion of metalized fuel flat surface under unlimited blowing flow is investigated. The mathematical model describes the erosion effects of solid fuel through boundary layer approximation. The blowing effect is considered in turbulent heat-mass transfer. Results of theoretical and numerical analyses show the influence of aluminum powder additives on the burning rate of solid propellant under blowing flow. This study provides data on the dependence of propellant burning rate on blowing flow speed and dispersion of metal particles in the solid propellant.
引用
收藏
页码:2245 / 2253
页数:8
相关论文
共 50 条
  • [21] Investigations of high-speed projectile impact on symmetric sandwich structures containing solid propellant with core perforations
    Wen, Junjie
    Zhang, Yiming
    Yang, Xiufeng
    Cai, Yang
    Chen, Sen
    Hou, Xiao
    Wu, Yi
    INTERNATIONAL JOURNAL OF IMPACT ENGINEERING, 2025, 196
  • [22] High efficient solid composite propellant combustion by electric control
    Wen, Zhan
    Jiang, Yanfeng
    Zhang, Wenchao
    Liu, Lu
    Liu, Peijin
    Ao, Wen
    COMBUSTION AND FLAME, 2024, 269
  • [23] SOLUTION OF THERMOCHEMICAL PROPELLANT CALCULATIONS ON A HIGH-SPEED DIGITAL COMPUTER
    DONEGAN, AJ
    FARBER, M
    JET PROPULSION, 1956, 26 (03): : 164 - 171
  • [24] Mechanism of solid propellant combustion submitted to a high plasma flux
    Alimi, Roger
    Berdichevsky, Vadint
    PROPELLANTS EXPLOSIVES PYROTECHNICS, 2008, 33 (02) : 118 - 121
  • [25] High-speed imaging in a flow
    Markus Elsner
    Nature Biotechnology, 2012, 30 (9) : 841 - 841
  • [26] External combustion of high-speed multicomponent hydrocarbon-air flow under conditions of low-temperature plasma
    Baurov, A. Yu.
    Shibkova, L. V.
    Shibkov, V. M.
    Kopyl, P. V.
    Surkont, O. S.
    MOSCOW UNIVERSITY PHYSICS BULLETIN, 2013, 68 (04) : 293 - 298
  • [27] External combustion of high-speed multicomponent hydrocarbon-air flow under conditions of low-temperature plasma
    A. Yu. Baurov
    L. V. Shibkova
    V. M. Shibkov
    P. V. Kopyl
    O. S. Surkont
    Moscow University Physics Bulletin, 2013, 68 : 293 - 298
  • [28] A mathematical model of metallized solid propellant combustion under the changing pressure
    Poryazov, Vasily
    Krainov, Aleksei
    Krainov, Dmitry
    XXXIII SIBERIAN THERMOPHYSICAL SEMINAR (STS-33), 2017, 115
  • [29] NOISE OF HIGH-SPEED JETS WITH ROUGH COMBUSTION
    ABDELHAM.AN
    HARRJE, DT
    PLETT, EG
    SUMMERFI.M
    JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA, 1973, 53 (01): : 386 - &
  • [30] Numerical Simulation of Turbulent Flow on a High-Speed Crossflow Blowing over Array Slots with Weak Injection
    Lin, Mei
    Xu, Xuefang
    Wu, Bo
    Wang, Liangbi
    Wang, Qiuwang
    CLEAN, EFFICIENT AND AFFORDABLE ENERGY FOR A SUSTAINABLE FUTURE, 2015, 75 : 1734 - 1739