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兵工学报 ›› 2025, Vol. 46 ›› Issue (1): 240013-.doi: 10.12382/bgxb.2024.0013

• • 上一篇    

脉冲触发对固体火箭发动机内弹道和瞬态流场特性的影响

卢健程1, 李军伟1,*(), 张文昊1, 曾佳进1, 牛俊博2, 王宁飞1   

  1. 1 北京理工大学 宇航学院, 北京 100081
    2 西安深蓝航天科技有限公司, 陕西 西安 710018

Effect of Pulse Triggering on Internal Ballistics and Transient Flow Field Characteristics of Solid Rocket Motor

LU Jiancheng1, LI Junwei1,*(), ZHANG Wenhao1, ZENG Jiajin1, NIU Junbo2, WANG Ningfei1   

  1. 1 School of Aerospace Engineering, Beijing Institute of Technology, Beijing 100081, China
    2 Xi’an Shenlan Aerospace Technology Co., Ltd., Xi’an 710018, Shaanxi, China
  • Received:2024-01-06 Online:2024-02-27

摘要:

为研究脉冲触发对固体火箭发动机内弹道及瞬态流场特性的影响,利用数值计算方法建立脉冲触发器内弹道模型、发动机侵蚀燃烧模型以及动态流场仿真模型,对固体火箭发动机脉冲触发过程进行瞬态流场仿真。研究结果表明:与实验结果相比,压强预示误差小于5%;脉冲触发使得燃烧室内横向气流速度增大,靠近脉冲端的推进剂发生了侵蚀燃烧,侵蚀燃烧对压强抬升的贡献高达44%;脉冲触发时,越靠近脉冲入口的推进剂受侵蚀燃烧越严重,侵蚀比最大可达7.32;改变脉冲药量研究发现,脉冲药量越大,发动机压强峰值越大,压强抬升率和脉冲结束后的衰减率越大。

关键词: 固体火箭发动机, 脉冲触发, 侵蚀燃烧, 流场仿真

Abstract:

The effect of pulse triggering on the internal ballistics and transient flow field characteristics of solid rocket motor (SRM) is studied.An internal ballistic model of pulse triggering,a erosion combustion model and a dynamic flow field simulation model are established by numerical calculation method.The transient flow field of solid rocket motor in the process of pulse triggering is simulated.The results show that,the pressure prediction error is less than 5% compared with the experimental result.The pulse triggering increases the velocity of transverse gas flow in the combustion chamber,and the propellant near the pulse end is burning with erosion,which contributes 44% to the pressure rise.When the pulse is triggered,the closer the propellant is to the pulse inlet,the more aggressive the erosive burning is,and the maximum erosion ratio can reach 7.32.The simulated results show that the higher the pulse charge is,the greater the peak pressure is,the higher the pressure rise rate is,and the higher the attenuation rate is after the pulse is terminated.

Key words: solid rocket motor, pulse triggering, erosive burning, flow field simulation

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