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Numerical simulation of spinning detonation in circular section channels

机译:圆形断面通道内旋转爆轰的数值模拟

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Numerical simulation of three-dimensional structures of gas detonation in circular section channels that emerge due to the instability when the one-dimensional flow is initiated by energy supply at the closed end of the channel is performed. It is found that in channels with a large diameter, an irregular three-dimensional cellular detonation structure is formed. Furthermore, it is found that in channels with a small diameter circular section, the initially plane detonation wave is spontaneously transformed into a spinning detonation wave, while passing through four phases. A critical value of the channel diameter that divides the regimes with the three-dimensional cellular detonation and spinning detonation is determined. The stability of the spinning detonation wave under perturbations occurring when the wave passes into a channel with a greater (a smaller) diameter is investigated. It is found that the spin is preserved if the diameter of the next channel (into which the wave passes) is smaller (respectively, greater) than a certain critical value. The computations were performed on the Lomonosov supercomputer using from 0.1 to 10 billions of computational cells. All the computations of the cellular and spinning detonation were performed in the whole long three-dimensional channel (up to 1 m long) rather than only in its part containing the detonation wave; this made it possible to adequately simulate and investigate the features of the transformation of the detonation structure in the process of its propagation.
机译:进行了圆形截面通道内气体爆炸的三维结构的数值模拟,该三维结构是由于通道封闭端的能量供应引发一维流动时由于不稳定性而出现的。发现在大直径的通道中,形成不规则的三维蜂窝爆炸结构。此外,发现在具有小直径圆形截面的通道中,最初的平面爆震波在经过四个相的同时自发地转变为旋转的爆震波。确定通道直径的临界值,该临界值用三维蜂窝爆炸和旋转爆炸来划分方案。研究了旋转爆轰波进入直径更大(或更小)的通道时在扰动下的稳定性。可以发现,如果下一个通道(波穿过的通道)的直径小于(分别大于)某个临界值,则该旋转将保留。计算是在罗蒙诺索夫超级计算机上使用0.1到100亿个计算单元进行的。蜂窝和旋转爆轰的所有计算都是在整个长三维通道(最长1 m)中进行的,而不仅仅是在包含爆轰波的部分中进行;这样就可以在爆炸过程中充分模拟和研究爆炸结构的转变特征。

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