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On the response of annular injectors to rotating detonation waves

机译:在环形喷射器响应旋转爆轰波的响应

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A series of three-dimensional, unsteady simulations have been conducted to illuminate the behavior of annular gaseous injectors that are frequently used in rotating detonation engine combustors. The strength (detonation overpressure history) and number of detonation waves in the combustor are investigated as operational parameters along with the injector design (area ratio and length) to assess the impact on the unsteady response of the injection system to the imposed detonation model. Attenuation of the imposed overpressure and reflection off the assumed mass flow inlet boundary are features that are highlighted. The unsteady flow at the exit of the injector as a result of these interactions is found to fluctuate by + 80 to - 200%. Strong wave attenuation in the near-exit region of the injector is observed, but acoustic perturbations are seen to propagate throughout the injector, which along with the corresponding reflections persist during the transient injection.
机译:已经进行了一系列三维,不稳定的模拟,以照亮常用于旋转爆轰发动机燃烧器的环形气态注射器的行为。 燃烧器中的强度(爆炸过压历史)和爆炸波的数量作为操作参数以及喷射器设计(面积比和长度)来评估对注射系统的不稳定响应到施加的爆轰模型的影响。 假定质量流入口边界的施加超压和反射的衰减是突出显示的特征。 由于这些相互作用而出口的出口处的不稳定流量被发现波动+ 80至-200%。 观察到喷射器的近射出区域中的强波衰减,但是看到声扰动在整个喷射器中传播,其在瞬态注射期间与相应的反射持续存在。

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