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Transient Side Load Analysis of Out-of-Round Film-Cooled Nozzle Extensions

机译:圆角薄膜冷却喷嘴扩展的瞬时侧向载荷分析

摘要

There was interest in understanding the impact of out-of-round nozzle extension on the nozzle side load during transient startup operations. The out-of-round nozzle extension could be the result of asymmetric internal stresses, deformation induced by previous tests, and asymmetric loads induced by hardware attached to the nozzle. The objective of this study was therefore to computationally investigate the effect of out-of-round nozzle extension on the nozzle side loads during an engine startup transient. The rocket engine studied encompasses a regeneratively cooled chamber and nozzle, along with a film cooled nozzle extension. The computational methodology is based on an unstructured-grid, pressure-based computational fluid dynamics formulation, and transient inlet boundary flow properties derived from an engine system simulation. Six three-dimensional cases were performed with the out-of-roundness achieved by three different degrees of ovalization, elongated on lateral y and z axes: one slightly out-of-round, one more out-of-round, and one significantly out-of-round. The results show that the separation line jump was the primary source of the peak side loads. Comparing to the peak side load of the perfectly round nozzle, the peak side loads increased for the slightly and more ovalized nozzle extensions, and either increased or decreased for the two significantly ovalized nozzle extensions. A theory based on the counteraction of the flow destabilizing effect of an exacerbated asymmetrical flow caused by a lower degree of ovalization, and the flow stabilizing effect of a more symmetrical flow, created also by ovalization, is presented to explain the observations obtained in this effort.
机译:有兴趣了解在瞬态启动操作过程中喷嘴不圆角延伸对喷嘴侧负载的影响。喷嘴不圆角可能是内部应力不对称,先前测试引起的变形以及安装在喷嘴上的硬件引起的不对称载荷的结果。因此,本研究的目的是在发动机启动瞬态过程中,通过计算研究不圆喷嘴延伸对喷嘴侧负载的影响。研究的火箭发动机包括蓄冷室和喷嘴,以及薄膜冷却的喷嘴延伸部分。该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从发动机系统仿真中得出的瞬态进气道边界流动特性。通过三个不同程度的椭圆化,在六个三维情况下进行了不圆度处理,它们在y和z横轴上拉长:一个稍微不圆,另一个不圆和一个明显不圆一轮结果表明,分离线跳动是峰值侧载荷的主要来源。与完全圆形喷嘴的峰值侧负载相比,峰值侧负载随着椭圆形喷嘴的延伸逐渐增大而增大,而对于两个明显椭圆形的喷嘴延伸则增大或减小。提出了一种理论,该理论基于由较低程度的椭圆化引起的加剧的不对称流的流量稳定作用的抵消作用,以及由椭圆化产生的更加对称的流的流量稳定作用的抵消作用,来解释在此工作中获得的观察结果。

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