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Supersonic driven detonation dynamics for rotating detonation engines

机译:超声速驱动旋转爆震发动机的爆震动力学

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In this paper we present the first exploration of detonation wave propagation dynamics in premixed supersonic flows using a novel rotating detonation engine (RDE) configuration. An RDE with a coupled linear extension, referred to as rho DE, is used to divide detonations traveling radially in the RDE into linearly propagating waves. A tangential propagating wave is directed down a modular tangential linearized extension to the engine for ease of optical diagnostics and hardware configuration investigations. A premixed Mach 2 supersonic linear extension is coupled to the rho DE to investigate the effects of varying crossflow configurations for detonation propagation, particularly the interaction between detonations and supersonic reactive mixtures. Detonation waves are generated at the steady operating frequency of the RDE and visualized using high speed schlieren and broadband OH* chemiluminescence imaging. The stagnation pressure was varied from over- to ideally-expanded supersonic regimes. Experimental analysis of detonation interaction with the supersonic regimes show that the detonation propagates freely in the ideally-expanded regime. Deflagration-to-detonation transition (DDT) occurs in the overexpanded regime. Based on the data collected, the DDT process favors supersonic flow with higher source pressures. 2019 Hydrogen Energy Publications LLC. (C) Published by Elsevier Ltd. All rights reserved.
机译:在本文中,我们介绍了使用新型旋转爆震引擎(RDE)配置在预混超音速流中起爆波传播动力学的首次探索。具有耦合的线性扩展的RDE,称为rho DE,用于将在RDE中径向行进的爆震分成线性传播的波。切向传播波被向下引导到引擎的模块化切向线性化扩展,以简化光学诊断和硬件配置研究。预混的Mach 2超音速线性扩展与rho DE耦合,以研究变化的错流配置对爆轰传播的影响,尤其是爆轰和超音速反应混合物之间的相互作用。爆轰波以RDE的稳定工作频率生成,并使用高速schlieren和宽带OH *化学发光成像进行可视化。停滞压力从超音速状态扩展到理想的超音速状态。爆炸与超音速状态的相互作用的实验分析表明,爆炸在理想扩展状态下自由传播。爆燃-爆轰过渡(DDT)发生在过度膨胀状态下。基于收集到的数据,DDT过程有利于具有更高源压力的超音速流。 2019 Hydrogen Energy Publications LLC。 (C)由Elsevier Ltd.出版。保留所有权利。

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