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Transient Three-Dimensional Side Load Analysis of Out-of-Round Film Cooled Nozzles

机译:圆角薄膜冷却喷嘴的瞬态三维侧向载荷分析

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摘要

The objective of this study is to investigate the effect of nozzle out-of-roundness on the transient startup side loads. The out-of-roundness could be the result of asymmetric loads induced by hardware attached to the nozzle, asymmetric internal stresses induced by previous tests and/or deformation, such as creep, from previous tests. The rocket engine studied encompasses a regeneratively cooled thrust chamber and a film cooled nozzle extension with film coolant distributed from a turbine exhaust manifold. The computational methodology is based on an unstructured-grid, pressure-based computational fluid dynamics formulation, and a transient inlet history based on an engine system simulation. Transient startup computations were performed with the out-of-roundness achieved by four degrees of ovalization of the nozzle: one perfectly round, one slightly out-of-round, one more out-of-round, and one significantly out-of-round. The computed side load physics caused by the nozzle out-of-roundness and its effect on nozzle side load are reported and discussed.
机译:这项研究的目的是研究喷嘴不圆度对瞬态启动侧负荷的影响。不圆度可能是由于安装在喷嘴上的硬件引起的不对称载荷,先前测试引起的不对称内部应力和/或先前测试引起的变形(例如蠕变)的结果。所研究的火箭发动机包括一个再生冷却的推力室和一个膜冷却的喷嘴延伸段,其中膜冷却剂从涡轮机排气歧管分配。计算方法基于非结构化网格,基于压力的计算流体动力学公式,以及基于发动机系统仿真的瞬时进气历史。瞬态启动计算是通过喷嘴的四个椭圆度实现的不圆度:一个完美的圆,一个稍微不圆的圆形,另一个不圆的圆形和一个明显不圆的圆形。报告并讨论了由喷嘴不圆度引起的计算出的侧向载荷物理特性及其对喷嘴侧向载荷的影响。

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