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首页> 外文期刊>Czechoslovak Mathematical Journal >Engineering Method of Prediction of Plume Path of Air Launched Missile
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Engineering Method of Prediction of Plume Path of Air Launched Missile

机译:空气发射导弹羽流路径预测的工程方法

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摘要

Separation dynamics study of an air-launched missile is a paramount task for ensuring the safety of launch aircraft. The study should certify that there is absolute absence of any physical interference of missile with the aircraft at any circumstance. It is also important to ensure that the interference of rocket motor plume of hot-launched missile does not have any significant effect on the structure, on board electronic components and sensitive parts of the aircraft. The plume ingestion into the aircraft intake is a critical problem which endangers the safety of the aircraft. Therefore, the prediction of plume path of hot-launched missile is a significant part of separation dynamics study. An engineering approach based on a particle tracking method was followed in predicting the plume path in the present work. Further, the method is modified using reverse particle tracking method to make it more efficient. The method is applied in predicting plume path for an air-to air-missile and is found that this approach gives reasonably accurate plume path with minimum computational requirements.
机译:空气发射导弹的分离动力学研究是确保发动机安全的最重要任务。该研究应证明在任何情况下都有绝对没有导弹的任何物理干扰。还有重要的是要确保火箭电机的热发射导弹的干扰对该结构的结构没有任何显着影响,以及飞机的敏感部件。摄入飞机摄入的羽毛是危及飞机安全的关键问题。因此,热发射导弹的羽流路径的预测是分离动力学研究的重要组成部分。采用基于粒子跟踪方法的工程方法预测本作工作中的羽流路径。此外,使用反向粒子跟踪方法进行修改该方法,使其更有效。该方法应用于预测空气 - 空气导弹的羽流路径,并发现该方法提供了具有最小计算要求的合理精确的羽流路径。

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