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An experimental study on CH4/O-2 continuously rotating detonation wave in a hollow combustion chamber

机译:中空燃烧室CH4 / O-2连续旋转爆轰波的实验研究

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CH4/O-2 continuously rotating detonation waves (CRDWs) have been experimentally achieved in a special model with a hollow combustion chamber rather than a typical cylindrical annular chamber. Experiments were conducted at atmospheric backpressure and under various injection conditions (different mass flow rates of CH4/O-2 gaseous mixture). The injection conditions, together with the time domain and frequency domain characteristics of the high frequency pressure, have been analyzed. A high speed camera was employed to roughly record the reaction zone structure. Results show that for the given test mode working with lower mass flow rates - 38 g s(-1) CH4 and 131.7 g s(-1) O-2 (leading to an equivalence ratio of 1.154), CRDWs occurred but were not stably propagating. In contrast, stably propagated CRDWs were observed in a four-wave mode when mass flow rates were increased to 36.1 g s(-1) CH4 and 217.2 g s(-1) O-2 (leading to an equivalence ratio of 0.665). The corresponding average frequency and average velocity of the CRDWs were 19.251 kHz and 1512 m s(-1), respectively. FFT and STFT discussions on the high-frequency pressure history of CRDWs validated the stability of rotating detonation waves in the hollow chamber. This study further verified the feasibility of triggering the CRDW in a unique hollow combustion chamber through annular injection distribution. Injecting enough combustible mixture is the essential condition for sustaining a stable CRDW. (C) 2014 Elsevier Inc. All rights reserved.
机译:CH4 / O-2连续旋转爆轰波(CRDWs)已在具有空心燃烧室而不是典型的圆柱形环形室的特殊模型中通过实验获得。实验是在大气背压和各种注入条件下(CH4 / O-2气态混合物的质量流量不同)进行的。分析了注入条件,以及高频压力的时域和频域特征。用高速照相机粗略记录反应区的结构。结果表明,对于给定的测试模式,在较低的质量流量下工作-38 g s(-1)CH4和131.7 g s(-1)O-2(导致当量比为1.154),发生了CRDW,但不稳定地传播。相反,当质量流量增加到36.1 g s(-1)CH4和217.2 g s(-1)O-2(导致当量比为0.665)时,在四波模式下观察到稳定传播的CRDWs。 CRDW的相应平均频率和平均速度分别为19.251 kHz和1512 m s(-1)。关于CRDW的高频压力历史的FFT和STFT讨论验证了空心腔室中旋转爆轰波的稳定性。这项研究进一步证明了通过环形喷射分布在一个独特的中空燃烧室中触发CRDW的可行性。注入足够的可燃混合物是维持稳定CRDW的必要条件。 (C)2014 Elsevier Inc.保留所有权利。

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