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Modeling of aircraft effects on external store ejection

机译:飞机对外部商店退货的影响建模

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摘要

Modern fighter aircraft, together with their interceptor roles, are utilized as aerial bomb and long-/short-range missile carriers. Separation of those external stores from aircraft is still a challenge where the external store has to clear the carrier aircraft following the ejection process. Aircraft and store aerodynamics coupled with their individual flight conditions may result in an unsafe ejection where the store may interfere with the carrier aircraft instead of a clear separation. Store ejection is the initial phase of the launching process, which dominates the separation of the store by generating the initial conditions. Any error introduced to the store separation analysis during this phase will propagate to the complete trajectory solution, which is used for determining whether the store separation is safe or not. The objective of this paper is to present a computational methodology that includes not only the store aerodynamics but also the interactions of the store with aircraft rigid body motions and deformations, together with ejector dynamics. In this study, store aerodynamics, aircraft aerodynamics, aircraft aeroelasticity, and pylon elasticity are used to characterize the ejector dynamics for determining the ejection end-of-stroke parameters.
机译:现代战斗机及其拦截器功能被用作空中炸弹和远程导弹。这些外部存储与飞机的分离仍然是一个挑战,其中外部存储必须在弹射过程之后清理运输机。飞机和机舱的空气动力学特性及其各自的飞行状况可能导致不安全的弹出,在这种情况下,机舱可能会干扰运载飞机,而不是明显分开。商店弹出是启动过程的初始阶段,它通过生成初始条件来控制商店的分离。在此阶段引入到存储分离分析中的任何错误都将传播到完整的轨迹解决方案,该解决方案用于确定存储分离是否安全。本文的目的是提出一种计算方法,该方法不仅包括存储空气动力学,而且还包括存储与飞机刚体运动和变形的相互作用,以及喷射器动力学。在这项研究中,使用存储空气动力学,飞机空气动力学,飞机空气弹性和塔架弹性来表征喷射器动力学特性,从而确定喷射冲程终点参数。

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