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Oblique detonation waves stabilized in rectangular-cross-section bent tubes

机译:矩形截面弯曲管中稳定的倾斜爆轰波

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摘要

Oblique detonation waves, which are generated by a fundamental detonation phenomenon occurring in bent tubes, may be applied to fuel combustion in high-efficiency engines such as a pulse detonation engine (PDE) and a rotating detonation engine (RDE). The present study has experimentally demonstrated that steady-state oblique detonation waves propagated stably through rectangular-cross-section bent tubes by visualizing these waves using a high-speed camera and the shadowgraph method. The oblique detonation waves were stabilized under the conditions of high initial pressure and a large curvature radius of the inside wall of the rectangular-cross-section bent tube. The geometrical shapes of the stabilized oblique detonation waves were calculated, and the results of the calculation were in good agreement with those of our experiment. Moreover, it was experimentally shown that the critical condition under which steady-state oblique detonation waves can stably propagate through the rectangular-cross-section bent tubes was the curvature radius of the inside wall of the rectangular-cross-section bent tube equivalent to 14–40 times the cell width.
机译:由在弯管中发生的基本爆震现象产生的倾斜爆震波可以应用于高效发动机,例如脉冲爆震发动机(PDE)和旋转爆震发动机(RDE)中的燃料燃烧。本研究已通过实验证明,通过使用高速相机和阴影图方法对这些波进行可视化,可以稳定地在矩形横截面弯曲管中稳定传播倾斜爆轰波。在高初始压力和矩形截面弯曲管的内壁的大曲率半径的条件下,倾斜的爆震波稳定。计算了稳定的爆轰波的几何形状,计算结果与我们的实验吻合良好。此外,实验表明,稳态倾斜爆轰波能够稳定地通过矩形截面弯曲管传播的临界条件是矩形截面弯曲管内壁的曲率半径等于14。像元宽度的40倍。

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