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首页> 外文期刊>Acta astronautica >Fluid-structure coupled simulation of ignition transient in a dual pulse motor using overset grid method
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Fluid-structure coupled simulation of ignition transient in a dual pulse motor using overset grid method

机译:使用普雷栅格法测定双脉冲电动机点火瞬态的流体结构耦合模拟

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摘要

In this paper, the second pulse ignition transient in a dual pulse solid rocket motor with elastomeric barrier pulse separation device has been conducted numerically. An in-house code has been developed to solve governing equations for unsteady compressible flow, heat conduction and structural dynamic. The solid propellant ignition and burning numerical models have been added. The fluid structure interaction is implemented by using the conventional serial staggered algorithm. The large deformation and expansion of the elastomeric barrier are addressed by the dynamic overset grid technology. The accuracy of the numerical method is validated by the experimental cases. Then, the detailed flow field development, pressure evolution, flame propagation characteristics in the combustion chamber, and the structural response of elastomeric barrier are analyzed carefully. The rupture-time and rupture-pressure of the elastomeric barrier are also obtained. The numerical results show that the elastomeric barrier deformation presents a small displacement at the front part and a large displacement at the rear section. The interaction of the compression waves and expansion waves from the convergent portion of the nozzle and from the motor head-end, as well as the supersonic annular jet flow in the combustion chamber, can induce obvious pressure rises with fluctuations and spikes. The first pulse free volume has a significant effect on the time to reach a steady state.
机译:本文在具有弹性屏障脉冲分离装置的双脉冲固体火箭电动机中的第二脉冲点火瞬态已经在数值上进行。已经开发出内部代码来解决非稳定可压缩流动,导热和结构动态的控制方程。添加了固体推进剂点火和燃烧数值模型。通过使用传统的串行交错算法来实现流体结构相互作用。弹性屏障的大变形和膨胀由动态推销网格技术解决。通过实验案例验证了数值方法的准确性。然后,小心地分析了燃烧室中的详细流场显影,压力进化,火焰传播特性和弹性屏障的结构响应。还获得了弹性屏障的破裂时间和破裂压力。数值结果表明,弹性体屏障变形在前部处具有小位移和后部的大位移。压缩波和膨胀波从喷嘴和电动机头端的会聚部分的相互作用,以及燃烧室中的超音环形射流,可以引起明显的压力升高,波动和尖峰升高。第一脉冲自由体积对达到稳态的时间具有显着影响。

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