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Numerical and Analytical Assessment of a Coupled Rotating Detonation Engine and Turbine Experiment

机译:耦合旋转爆轰发动机的数值分析与涡轮试验

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An analysis is presented of an experimental rig comprising a rotating detonation engine (RDE) with bypass ejector flow coupled to a downstream turbine. The analysis used a validated computational fluid dynamics RDE simulation combined with straightforward algebraic mixing equations for the bypass flow. The objectives of the analysis were to supplement and interpret the necessarily sparse measurements from the rig, and to assess the performance of the RDE itself, which was not instrumented in this installation. The analysis is seen to agree reasonably well with available data. It shows that the RDE is operating in an unusual fashion, with subsonic flow throughout the exhaust plane. The detonation event itself is producing a total pressure rise relative to the pre-detonative pressure; however, the length of the device and the substantial flow restriction at the inlet yield an overall pressure loss. This is not surprising since the objective of the rig test was primarily aimed at investigating RDE/turbine interactions, and not on performance optimization. Furthermore, the RDE was designed for fundamental detonation studies and not performance. Nevertheless, the analysis indicates that with some small alterations to the design, an RDE with an overall pressure rise is possible.
机译:对包括旋转爆震发动机(RDE)在内的实验装置进行了分析,该发动机的旁通喷射器流与下游涡轮机相连。分析使用了经过验证的计算流体动力学RDE模拟,并结合了直接的代数混合方程式进行旁通流量计算。分析的目的是补充和解释钻机上必要的稀疏测量值,并评估RDE本身的性能,RDE本身未在此安装中安装。该分析被认为与可用数据相当吻合。它表明RDE以一种不寻常的方式运行,整个排气平面都有亚音速流。爆炸事件本身正在产生相对于爆炸前压力的总压力上升。但是,装置的长度和入口处的流量限制会导致整体压力损失。这并不奇怪,因为钻机测试的目的主要是研究RDE /涡轮相互作用,而不是性能优化。此外,RDE设计用于基础爆轰研究而不是性能研究。尽管如此,分析表明,通过对设计进行一些小的改动,可以实现整体压力上升的RDE。

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