环形管内预混甲烷-氧气爆震波的细胞特性

Q4 Engineering
Niu Shuzhen, Yinghua Zhang, Zhao Huanjuan, Yan Yiran
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引用次数: 0

摘要

为了研究爆轰在环形管中的传播,用甲烷-氧气混合物进行了实验。配置不同内径D0的年管,并在环形管的外壁和内壁上固定烟熏箔,以记录爆震结构。首先,研究发现,随着初始压力和通道内径的增加,环形管外壁和内壁上的横波模式都会增加。此外,横波与管轴之间角度的测量在误差范围内与声学理论不一致。在结果中,角度和单元尺寸随压力的变化较小,而随通道位置的不同而变化较大,这表明了管道几何形状的强烈依赖性。此外,由于不同横波的初始能量不同,维持旋转爆轰横向振动所需的能量必须来自前部的化学能释放,因此追踪了右行横波的轨迹,部分横波在聚碳酸酯管中消失。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cellular Property of the Detonation Wave of Pre-mixed Methane-Oxygen in Annular Tube
In order to investigate the detonation propagation in the annular tube, the experiments are conducted with methane-oxygen mixture. Annual tubes with different inner diameter D0 were configured and smoked foils were fixed on both outer wall and the inner wall of the annular tube to record the detonation structure. Firstly, it is found that transverse wave modes on both outer wall and the inner wall of the annular tube increase with increasing initial pressure and inner diameter of the channel. In addition, the measurement of angle between the transverse wave and the tube axis disagrees acoustic theory within the error range. In the results, the angle and the cell size changes less with pressure and more with different position of the channel, demonstrating the strongly dependence of the tube geometric. What’s more, the trajectories of right-running transverse wave were traced and some of the transverse waves disappeared in the polycarbonate tube, because the initial energy of different transverse waves are different and the energy required to sustain the transverse vibration of spinning detonation must be derived from the chemical energy release at the front.
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来源期刊
CiteScore
1.10
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发文量
2437
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