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Experimental research on ignition, quenching, reinitiation and the stabilization process in rotating detonation engine

机译:旋转爆震发动机着火,淬火,再初始化及稳定过程的实验研究

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This paper presents an experimental research on ignition, quenching, reinitiation and the stabilization process in hydrogen-air rotating detonation engine with an array of injection holes. The stabilization process can be divided into six sections, including deflagration, deflagration to detonation transition (DDT) process, coexistence of detonation with deflagration, coexistence of strong & weak detonations, unstable to stable detonation transition and stable detonation. The phenomenon of single-double-single wave transition is found and analyzed for the first time in the experiment. During the transition, the initial strong detonation wave weakens until it disappears, and the weak detonation wave becomes stronger until it propagates steadily. The reinitiation phenomenon is related to the injection pressures of the propellant. Increasing the injection pressure helps to reinitiate, thus avoiding the occurrence of the quenching phenomenon. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文提出了带有喷孔阵列的氢空气旋转爆轰发动机点火,淬火,再初始化和稳定过程的实验研究。稳定过程可分为六个部分,包括爆燃,爆燃到爆轰过渡(DDT)过程,爆轰与爆燃并存,强爆和弱爆并存,不稳定到稳定爆轰过渡以及稳定爆轰并存。实验中首次发现并分析了单双单波跃迁现象。在过渡过程中,最初的强爆震波减弱直到消失,而弱爆震波变强直到稳定传播。重新引发现象与推进剂的喷射压力有关。增加注射压力有助于重新启动,从而避免了淬火现象的发生。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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