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首页> 外文期刊>Combustion Science and Technology >NUMERICAL INVESTIGATION OF SPONTANEOUS FORMATION OF MULTIPLE DETONATION WAVE FRONTS IN ROTATING DETONATION ENGINE
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NUMERICAL INVESTIGATION OF SPONTANEOUS FORMATION OF MULTIPLE DETONATION WAVE FRONTS IN ROTATING DETONATION ENGINE

机译:旋转爆轰发动机中多个爆轰波前部自发形成的数值研究

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摘要

This article presents a three-dimensional (3D) numerical study on rotating detonation engine (RDE), using the premixed stoichiometric hydrogen-air mixture. Different from a conventional numerical setting, intervals are set in the gas intake configuration to bring in effects of nonuniform injection in numerical simulation, which is more semblable to the actual condition in experiments. The simulation successfully shows the spontaneous formation of multiple detonation wave fronts. Discussion is carried out about the factors that affect the phenomenon of multiple detonation wave fronts, which may be helpful to enhance the stability and repeatability of the detonation initiation in RDE experiments. Then subsequently, the simulation result of a typical case is thoroughly described. Three stages of the spontaneous formation of multiple detonation wave fronts after initiation are analyzed. This typical case is also compared to both the conventional simulation and the experimental results to verify its effectiveness.
机译:本文介绍了使用预混合化学计量氢-空气混合物的旋转爆震发动机(RDE)的三维(3D)数值研究。与常规的数值设置不同,在进气配置中设置间隔以在数值模拟中产生不均匀喷射的效果,这更适合于实验中的实际情况。仿真成功显示了多个爆轰波阵面的自发形成。讨论了影响多个爆轰波阵面现象的因素,这可能有助于增强RDE实验中爆轰波的稳定性和可重复性。然后,随后,将详细描述典型案例的仿真结果。分析了多个爆轰波阵面自发形成后的三个阶段。还将这种典型情况与常规仿真和实验结果进行了比较,以验证其有效性。

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