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The formation and development of oblique detonation wave with different chemical reaction models

机译:不同化学反应模型的斜爆波的形成与发展

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In this paper, we investigate the formation and development characteristics of oblique detonation wave in stoichiometric hydrogen-oxygen mixtures diluted with argon using Euler equations coupled with the 19-step or 34-step chemical reaction model. The novelty of this work lies in the study of differences in the characteristics of the initiation region and the formation processes of oblique detonation by different chemical kinetic processes. The formation processes of radicals in the induction region and heat release region for the oblique detonation flow field are emphatically analyzed, and the differences in the sensitivity on the key chemical reaction channels to radicals are also discussed. The results show that under the action of 19-step mechanism, the oblique detonation forms relatively early, the wave morphology of the flow field is complex, and the type of the initiation region is abrupt transition. While for the 34-step mechanism, the structure of flow field is simple with smooth transition type. The existence of transverse wave in the mainstream region contributes a lot to the formation of a sonic region and the abrupt transition structure. The chemical kinetic process directly affects the flow field structure of oblique detonation, and H2O2 plays an important role on triggering and accelerating the exothermic process. The radicals of H, O and H2O2 have different properties in different chemical reaction models. (C) 2021 Elsevier Masson SAS. All rights reserved.
机译:在本文中,我们研究了用氩气稀释的化学计量氢气混合物中的倾斜爆炸波的形成和发展特征,使用氩气互换与19步或34步化学反应模型。这项工作的新颖性在于通过不同化学动力学过程研究起始区域特征的差异和倾斜爆轰的形成过程。重点分析了对倾斜爆炸流场的感应区域和热释放区域中的自由基的形成过程,还讨论了对基团的密钥化学反应通道对敏感性的差异。结果表明,在19步机构的作用下,倾斜爆炸形式相对较早,流场的波形形貌是复杂的,并且起始区域的类型是突然的转变。虽然对于34步机构,流场的结构简单,具有平滑的过渡型。主流区域中的横波的存在有很大贡献了对声波区域和突然过渡结构的形成。化学动力学过程直接影响倾斜爆炸的流场结构,H2O2在触发和加速放热过程中起着重要作用。 H,O和H 2 O 2的基团在不同化学反应模型中具有不同的性质。 (c)2021 Elsevier Masson SAS。版权所有。

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