Propagation process of H-2/air rotating detonation wave and influence factors in plane-radial structure

Propagation process of H-2/air rotating detonation wave and influence factors in plane-radial structure
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平面径向结构中H-2/空气旋转爆震波传播过程及影响因素

DOI:
10.1016/j.ijhydene.2018.01.061
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发表时间:
2018
影响因子:
7.2
通讯作者:
Zhou Changsheng
Zhou Changsheng
中科院分区:
工程技术2区
文献类型:
--
作者:
Xia Zhenjuan;Ma Hu;Zhuo Changfei;Zhou Changsheng

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The rotating detonation wave (RDW) propagation processes and influence factors are simulated in the plane-radial structure. The effects of inner radii of curvature, domain widths and stagnation pressures on propagation mode are studied. The RDW is initiated, and two kinds of propagation mode are obtained and analyzed. The flow field structure, parameters variation and influence factors on unstable propagation mode are explored in depth, and the geometrical and injection conditions of the unstable propagation are obtained. Results indicate that the decoupling and re-initiation occur repeatedly during the unstable propagation mode of the RDW, and the angular velocities of leading shock wave vary accordingly. When the domain width remains constant, the range of stagnation-pressure under unstable propagation mode increases as the inner radius increases. But the RDW propagates steadily when the inner radius increases to a certain value (Larger than 40 mm in this study). The effect of curvature radius and initial pressure ahead of detonation wave on the unstable propagation mode in this calculation model is similar to that in a curved channel. Whenri+0.464pa> 80.932 orri≥ 40 mm, the detonation wave can propagate steadily in the annular domain. When the curvature radius remains constant, the stagnation-pressure range of the unstable propagation mode decreases as the domain width increases.