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Numerical Analysis of Spinning Detonation Dependency on Initial Pressure Using AUSMDV Scheme

机译:基于AUSMDV格式的旋转爆轰对初始压力的依赖性数值分析

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In order to investigate the fundamental characteristics of spinning detonation propagating tubes, this present study shows a numerical simulation using AUSMDV scheme which is more capable to capture detonation phenomenon clearly than TVD scheme and a detailed chemical kinetic model of H_2/O_2 by Petersen and Hanson. By analyzing the lower limit of spinning detonation propagation, disclosing the detonation propagation limit and the feature is the present purpose. In the numerical results, the lower limit of spinning detonation propagating in a rectangular tube has partially analyzed. The numerical results indicated the differences of the propagation limit of spinning detonation propagating in between a circular tube and a rectangular tube. Because of the number of transverse wave, spinning detonation propagating in rectangular tube is able to maintain more than circular tube's one.
机译:为了研究旋转爆轰传播管的基本特性,本研究显示了使用AUSMDV方案进行的数值模拟,该方法比TVD方案更能清楚地捕获爆轰现象,并由Petersen和Hanson提出了详细的H_2 / O_2化学动力学模型。通过分析纺丝爆轰传播的下限,揭示了爆轰传播的极限和特征是目前的目的。在数值结果中,已经部分分析了在矩形管中传播的旋转爆轰的下限。数值结果表明,旋转爆轰在圆形管和矩形管之间传播的极限是不同的。由于横波的数量,矩形管中传播的旋转爆轰比圆形管能够维持更多。

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