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首页> 外文期刊>Journal of combustion >High-Resolution Numerical Simulation and Analysis of Mach ReflectionStructures in Detonation Waves in Low-Pressure H2–O2–Ar Mixtures: A Summary of Results Obtained with the Adaptive Mesh Refinement Framework AMROC
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High-Resolution Numerical Simulation and Analysis of Mach ReflectionStructures in Detonation Waves in Low-Pressure H2–O2–Ar Mixtures: A Summary of Results Obtained with the Adaptive Mesh Refinement Framework AMROC

机译:低压H2-O2-Ar混合物中爆轰波马赫反射结构的高分辨率数值模拟和分析:自适应网格细化框架AMROC的结果汇总

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Numerical simulation can be key to the understanding of the multidimensional nature of transient detonation waves. However, the accurate approximation of realistic detonations is demanding as a wide range of scales needs to be resolved. This paper describes a successful solution strategy that utilizes logically rectangular dynamically adaptive meshes. The hydrodynamic transport scheme and the treatment of the nonequilibrium reaction terms are sketched. A ghost fluid approach is integrated into the method to allow for embedded geometrically complex boundaries. Large-scale parallel simulations of unstable detonation structures of Chapman-Jouguet detonations in low-pressure hydrogen-oxygen-argon mixtures demonstrate the efficiency of the described techniques in practice. In particular, computations of regular cellular structures in two and three space dimensions and their development under transient conditions, that is, under diffraction and for propagation through bends are presented. Some of the observed patterns are classified by shock polar analysis, and a diagram of the transition boundaries between possible Mach reflection structures is constructed.
机译:数值模拟对于理解瞬态爆震波的多维性质至关重要。然而,由于需要解决各种尺度,因此要求精确逼近实际爆炸。本文介绍了一种成功的解决方案策略,该策略利用逻辑矩形动态自适应网格。概述了流体动力传输方案和非平衡反应项的处理。鬼流体方法已集成到该方法中,以允许嵌入几何上复杂的边界。在低压氢-氧-氩混合物中,Chapman-Jouguet爆轰的不稳定爆轰结构的大规模并行模拟证明了上述技术的有效性。特别是,提出了在两个和三个空间维度上规则细胞结构的计算及其在瞬态条件下的发展,即在衍射条件下以及通过弯曲的传播。通过震荡极谱分析对一些观察到的模式进行分类,并构造了可能的马赫反射结构之间的过渡边界图。

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