首页|高过载软回收系统内弹道双向耦合特性分析

高过载软回收系统内弹道双向耦合特性分析

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为探究高过载软回收系统中弹前压力对内弹道的影响,在20 000g过载指标要求下,建立了弹前具有高压缓冲气体作用下的双向耦合内弹道仿真模型,采用FLUENT软件计算弹前压力,并利用UDF将弹前压力与经典内弹道进行双向耦合仿真分析.在5.51 kg装药情况下,对质量为90 kg的弹仓进行高过载仿真,结果表明:2 MPa的弹前预充气体压力会造成膛内最大压力增大2.32%;预充气体为5、8、10 MPa的情况下,弹仓的最大速度分别降低7.32%、12.36%和15.61%;弹仓质量为70 kg和80 kg时,弹仓最大速度分别增大9.63%和4.56%;气体介质种类不同对弹前压力造成影响较小,选择空气作为缓冲介质最优.以弹前压力与内弹道之间的双向耦合模型为基础,分析预充气压、弹仓质量、预充气体介质对内弹道特性的影响,为空气阻尼软回收试验的内弹道研究提供了理论参考.
Analysis of bi-directional coupling characteristics in high overload soft recovery system internal ballistic
A bi-directionally coupled internal ballistic simulation model was developed to investigate the influence of projectile front pressure on the internal ballistics of high-overload soft recovery systems.The model includes a high-pressure buffer gas in front of the projectile,which meets the criteria of a 20,000g overload index.The FLUENT software was employed to calculate the projectile's frontal pressure,which was then integrated bidirectionally with classical internal ballistics for simulation analysis using User Defined Functions(UDF).In the context of a 5.51 kg propellant charge mass,high overload simulations were conducted on a 90 kg projectile compartment.The results indicate that a pre-inflation gas pressure of 2 MPa will increase the maximum pressure in the bore by 2.32%.When the pre-inflation gas pressures are 5 MPa,8 MPa,and 10 MPa,the maximum velocity of the projectile compartment decreases by 7.32%,12.36%,and 15.61%,respectively.For projectile compartment masses of 70 kg and 80 kg,the maximum velocities of the projectile compartments increase by 9.63%and 4.56%,respectively.The choice of different gas media has a relatively small impact on the projectile front pressure,with air being the optimal choice as the buffer medium.This paper examines the impact of pre-inflation pressure,projectile compartment mass,and pre-inflation gas medium on the characteristics of internal ballistics.The analysis is based on the bi-directional coupling model between the projectile's frontal pressure and internal ballistics.The findings provide theoretical references for the internal ballistics research of air-damped soft recovery tests.

air dampinginternal ballisticsflow field simulationbidirectional couplingfluent

邹萧枫、赵云飞、潘孝斌、狄芳

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南京理工大学 机械工程学院,南京 210094

三江学院 数理部,南京 210012

空气阻尼 内弹道 流场仿真 双向耦合 Fluent

2024

兵器装备工程学报
重庆市(四川省)兵工学会 重庆理工大学

兵器装备工程学报

CSTPCD北大核心
影响因子:0.478
ISSN:2096-2304
年,卷(期):2024.45(9)
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