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Effect of inlet and outlet boundary conditions on rotating detonation combustion

机译:入口和出口边界条件对旋转爆轰燃烧的影响

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In this work, the effect of different injector geometries and different outlet restrictions on the operating modes of a hydrogen-air Rotating Detonation Combustor (RDC) is investigated. The different operating modes are identified based on pressure measurements in the combustor annulus and the reactant supply, combined with high-speed video from the aft end of the combustor. The pressure frequency spectra are analyzed to determine the global operating mode in terms of number, direction, and speed of waves. The results explore the ability of the RDC to establish rotating, counter-rotating, and longitudinal waves, as well as their superpositions. A good agreement between longitudinal modes and the acoustic resonance frequencies of the RDC annulus was found. Overall, operation was found to be highly injector and outlet restriction dependent. Adding an outlet restriction helped to suppress counter-rotating waves, which is a prerequisite to stabilize single detonation waves. However, it was also shown to prompt high frequency pulsed operation. Apart from the total reactant supply pressure, the relative strength of the injectors was identified as a key factor for stable RDC operation. Pressure feedback into the reactant supply was observed to be dependent on the reactant supply pressure and the RDC operating mode. The study further revealed the presence of transverse resonance modes in the fuel plenum, however these oscillations were weak relative to the injector pressures and do not appear to influence the combustion. (C) 2020 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:在这项工作中,研究了不同喷射器几何形状的影响和不同出口限制对氢气旋转爆炸燃烧器(RDC)的操作模式的影响。基于燃烧器环和反应物供应中的压力测量来识别不同的操作模式,与来自燃烧器的后端的高速视频组合。分析压力频谱以根据数字,方向和波的速度来确定全局操作模式。结果探讨了RDC建立旋转,反旋转和纵波以及它们的叠加的能力。发现纵向模式与RDC环脉冲的声学谐振频率之间的良好一致性。总的来说,发现操作是高度注射器和出口限制依赖性。添加出口限制有助于抑制反向旋转波,这是稳定单个爆轰波的前提。但是,还显示出提示高频脉冲操作。除了总反应物供应压力外,喷射器的相对强度被鉴定为稳定的RDC操作的关键因素。观察到反应物供应的压力反馈以取决于反应物供应压力和RDC操作模式。该研究进一步揭示了燃料增压室中的横向共振模式的存在,但是相对于喷射器压力,这些振荡较弱,并且似乎不会影响燃烧。 (c)2020燃烧研究所。由elsevier Inc.出版的所有权利保留。

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