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Evolution of shock waves and the primary vortex loop discharged from a square cross-sectional tube

机译:从方形截面管中释放出的冲击波和初级涡流环的演变

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摘要

In this paper, a numerical and experimental investigation of the evolution of a transmitting shock wave and its associated primary vortex loop, which are discharged from the open end of a square cross-sectional tube, is described. The experiments were conducted in the square tube connected to a diaphragmless shock tube and the flowfield was visualized from the axial direction with diffusive holographic interferometry. The numerical simulations were carried out by solving the three-dimensional Euler equations with a dispersion-controlled scheme. The numerical results were displayed in the form of interferograms to compare them with experimental interferograms. Good agreement between the numerical and experimental results was obtained. More detailed numerical calculations were carried out, from which the three-dimensional transition of the shock wave configuration from an initial planar to a spherical shape and the development of the primary vortex loop from a square shaped to a three-dimensional structure were clearly observed and interpreted.
机译:在本文中,描述了从方形截面管的开口端排出的传输冲击波及其相关的主涡流环的演化的数值和实验研究。在连接到无隔膜减震管的方管中进行实验,并使用扩散全息干涉法从轴向观察流场。通过使用离散控制方案求解三维欧拉方程进行了数值模拟。数值结果以干涉图的形式显示,以与实验干涉图进行比较。数值结果与实验结果吻合良好。进行了更详细的数值计算,从中清楚地观察到了冲击波构型从初始平面到球形的三维过渡以及一次涡流环从方形到三维结构的发展,解释。

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