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Numerical Study on Wake Flow Field Characteristic of the Base-Bleed Unit under Fast Depressurization Process

机译:快速减压过程中碱基膨胀装置尾流场特性的数值研究

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Numerical analyses have been performed to study the influence of fast depressurization on the wake flow field of the base-bleed unit (BBU) with a secondary combustion when the base-bleed projectile is propelled out of the muzzle. Two-dimensional axisymmetric Navier-Stokes equations for a multi-component chemically reactive system is solved by Fortran program to calculate the couplings of the internal flow field and wake flow field with consideration of the combustion of the base-bleed propellant and secondary combustion effect. Based on the comparison with the experiments, the unsteady variation mechanism and secondary combustion characteristic of wake flow field under fast depressurization process is obtained numerically. The results show that in the fast depressurization process, the variation extent of the base pressure of the BBU is larger in first 0.9 ms and then decreases gradually and after 1.5 ms, it remains basically stable. The pressure and temperature of the base-bleed combustion chamber experience the decrease and pickup process. Moreover, after the pressure and temperature decrease to the lowest point, the phenomenon that the external gases are flowing back into the base-bleed combustion chamber appears. Also, with the decrease of the initial pressure, the unsteady process becomes shorter and the temperature gradient in the base-bleed combustion chamber declines under the fast depressurization process, which benefits the combustion of the base-bleed propellant.
机译:已经进行了数值分析,以研究基于枪口的底座射弹时的二次燃烧对基漏单元(BBU)的快速减压对底座流动场的影响。用于多组分化学反应系统的二维轴对称Navier-Stokes方程由Fortran程序解决,以计算内部流场和唤醒流场的耦合,考虑到底座引进的推进剂和二次燃烧效果的燃烧。基于与实验的比较,在数值上获得了快速减压过程中唤醒流场的不稳定变形机制和二次燃烧特性。结果表明,在快速减压过程中,BBU的基础压力的变化程度在前0.9ms中较大,然后逐渐降低,然后在1.5ms后降低,它保持基本稳定。底座燃烧室的压力和温度经历降低和拾取过程。此外,在压力和温度下降到最低点之后,外部气体流回底座燃烧室的现象出现。而且,随着初始压力的降低,不稳定的过程变短,并且在快速减压过程下碱基燃烧室中的温度梯度下降,这有利于碱渗流推进剂的燃烧。

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