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Aeroelastic Response of Rocket Nozzles Subjected to Combined Thrust and Side Loads

机译:火箭喷嘴在推力和侧向载荷共同作用下的气动弹性响应

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Lateral nozzle forces are known to cause severe structural damage to any new rocket engine in development during test. While three-dimensional, transient, turbulent, chemically reacting computational fluid dynamics methodology has been demonstrated to capture major side load physics with rigid nozzles, hot-fire tests often show nozzle structure deformation during major side load events. Such deformation leads to structural damages if appropriate structural strengthening measures are not taken. The modeling picture is incomplete without the aeroelastic coupling to address the two-way responses between the structure and fluid. The present work takes into account the aeroelastic coupling for side loads predictions. A loosely coupled method for fluid structural interaction is employed to study the role of the coupling. Two side load cases were computed and are comparatively analyzed for the J-2S nozzle, one case with flexible walls and the other with rigid walls. It is found that aeroelastic coupling has significant effects on the side loads in the nozzle.
机译:已知在测试期间,横向喷嘴力会对正在开发的任何新型火箭发动机造成严重的结构损坏。虽然已经证明了三维,瞬态,湍流,化学反应的计算流体动力学方法可以捕获带有刚性喷嘴的主要侧向载荷物理现象,但热火试验通常显示出在主要侧向载荷事件中喷嘴结构变形。如果不采取适当的结构加固措施,这种变形会导致结构损坏。没有气动弹性耦合来解决结构与流体之间的双向响应,建模图是不完整的。目前的工作考虑了气动弹性耦合的侧向载荷预测。一种用于流体结构相互作用的松散耦合方法被用来研究耦合的作用。计算了J-2S喷嘴的两个侧面载荷工况,并进行了比较分析,一个为柔性壁,另一种为刚性壁。已经发现,气弹耦合对喷嘴中的侧向载荷具有显着影响。

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