Two-phase flow numerical simulation and particle impingement heating prediction in SRM nozzle
-
摘要: 含有氧化铝粒子的两相流是固体火箭发动机喷管流场的重要特征.在有限体积方法框架下,采用基于热增量试验数据的粒子壁面反弹模型以及基于粒子轨道的单元内颗粒源(PSIC,Particle Source in Cell)两相流耦合算法,对喷管内两相流流场及粒子撞击产生的壁面热增量进行了计算和分析,研究了氧化铝粒子尺寸对粒子轨道分布和喷管壁面热增量分布的影响规律.研究结果表明:喷管扩张段内粒子稀疏区域范围随粒子直径增加而增大;粒子热增量只分布于喷管收缩段内,粒子直径越大,产生的壁面热增量越强.Abstract: The aluminum oxide particle laden two-phase flow is an important characteristic of the solid rocket motor (SRM) nozzle flow field. Numerical investigations were conducted to understand the two-phase flow field and the surface heat increment caused by particle impingement in SRM nozzle. The Eulerian Navier-Stokes equations for the gas-phase flow were solved by finite volume method. The particle source in cell (PSIC) two-phase coupling regime based on Lagrangian particle tracking scheme and the particle-wall rebounding model based on experimental data were applied in the computations. The influences of aluminum oxide particle size on the particle trajectories and the surface heat increment distribution were studied and investigated. The results show that in the nozzle expansion section, the particle free zone increases as the particle diameter increases; the peak value of nozzle surface heat increment rises up as the particle diameter increases; the surface heat increment occurs completely in the nozzle convergent section.
-
Key words:
- two phase flow /
- numerical simulation /
- rocket nozzles /
- heat flux
-
[1] 张宏安,叶定友,侯晓.固体火箭发动机凝聚相微粒分布研究现状[J].固体火箭技术,2000,23(3):25-28
Zhang Hongan,Ye Dingyou,Hou Xiao.Recent status of research on condensed-phase particles distribution in solid rocket motor[J].Journal of Solid Rocket Technology,2000,23(3):25-28(in Chinese)[2] 李雅娣,陈林泉,蹇泽群.粒子尺寸分级的喷管两相流场计算[J].固体火箭技术,2003,26(3):32-34
Li Yadi,Chen Linquan,Jian Zequn.Numerical study of two-phase nozzle flow with classified particles[J].Journal of Solid Rocket Technology,2003,26(3):32-34(in Chinese)[3] 李强,李江,刘佩进.模型发动机内凝相颗粒碰撞的数值模拟[J].推进技术,2008,29(1):18-21
Li Qiang,Li Jiang,Liu Peijin.Numerical simulation of particle collision and impingement for a model SRM[J].Journal of Propulsion Technology,2008,29(1):18-21(in Chinese)[4] Sabnis J S,Jong F J,Gibeling H J.Calculation of particle trajectories in solid-rocket motors with arbitrary acceleration[J].Journal of Propulsion and Power,1992,8(5):961-967 [5] 姜贵庆,王淑华.喷管内粒子热增量机理研究[J].固体火箭技术,1990,13(2):18-22
Jiang Guiqing,Wang Shuhua.The investigation of particle impingement heating mechanisms of SRM[J].Journal of Solid Rocket Technology,1990,13(2):18-22(in Chinese)[6] Dunbar L E,Courtney J F,Mcmillen L D.Heating augmentation in particle erosion environments[R].AIAA-74-607,1974 [7] Patnaik P.Handbook of inorganic chemicals[M].New York:McGraw-Hill,2002:11-12 [8] 傅德彬,姜毅,袁增凤.燃气射流气固两相流场研究[J].北京理工大学学报,2004,24(5):387-391
Fu Debin,Jiang Yi,Yuan Zengfeng.Numerical study on gas-solid two phase jet flow[J].Journal of Beijing Institute of Technology,2004,24(5):387-391(in Chinese)[9] 刘君,黄琳,夏智勋.潜入式摆动喷管两相内流场数值模拟[J].固体火箭技术,2003,26(4):18-21
Liu Jun,Huang Lin,Xia Zhixun.Numerical simulation on two-phase inner flow field of submerged vectored nozzle[J].Journal of Solid Rocket Technology,2003,26(4):18-21(in Chinese)[10] 方丁酉.两相流动力学[M].长沙:国防科技大学出版社,1988:46-47
Fang Dingyou.Two-phase flow dynamics[M].Changsha:National University of Defense Technology Press,1988:46-47(in Chinese)[11] 尚庆.湍流-颗粒反应相互作用的理论分析[D].北京:清华大学航天航空学院,2005
Shang Qing.Studies and application of theoretical model for turbulence-particle reaction interactions[D].Beijing:School of Aerospace,Tsinghua University,2005(in Chinese)[12] 傅德彬,姜毅.燃气射流气固两相数值模拟与颗粒冲刷分析[J].弹箭与制导学报,2004,24(1):63-66
Fu Debin,Jiang Yi.Numerical study on gas-solid two-phase jet flow and solid particle erosion[J].Journal of Projectiles Rockets Missiles and Guidance,2004,24(1):63-66(in Chinese)[13] 张旭.固体火箭发动机两相流特性研究[D].哈尔滨:哈尔滨工程大学航天与建筑工程学院,2006
Zhang Xu.The investigation of characteristics of two-phase flow in solid rocket motor[D].Harbin:College of Aerospace and Civil Engineering,Harbin Engineering University,2006(in Chinese)
点击查看大图
计量
- 文章访问数: 2767
- HTML全文浏览量: 332
- PDF下载量: 619
- 被引次数: 0