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首页> 外文期刊>International journal of hydrogen energy >Adaptive simulations of detonation propagation in 90-degree bent tubes
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Adaptive simulations of detonation propagation in 90-degree bent tubes

机译:90度弯管内爆轰传播的自适应模拟

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The open-code adaptive mesh refinement program AMROC was adopted to conduct numerical simulations of detonation propagation in 90 bent tubes. Propagation modes in bent tubes, the mechanism of detonation restored to stable propagation and effects of curvature radius on detonation restoration were explored in depth. Results indicate that with the increase of initial pressure and inner wall curvature radius, detonation propagation undergoes a transition from the unstable mode to the transition mode, and finally the stable mode. The critical conditions for mode transition among the unstable mode, the transition mode and the stable mode are r(0)/lambda = 13.7 and r(0)/lambda = 22.3, respectively, where A is the cellular width. In the unstable and transition modes, when the detonation crosses through the bent section, the detonation structure is destroyed. However, the generated Mach reflection can induce the formation of new transverse waves to realize re-initiation and the collision between two triple points can enhance the strength of the detonation gradually, which can cooperatively promote detonation restoration to self-sustained propagation. The curvature radius not only has an influence on the formation of the transverse wave, but also makes an impact on the position where the triple point of Mach reflection collides on the outer wall. The colliding position has an effect on collisions among triple points, which can influence detonation restoration eventually. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:采用开放代码自适应网格细化程序AMROC对90个弯管中的爆轰传播进行数值模拟。深入探讨了弯管的传播方式,爆轰恢复稳定传播的机理以及曲率半径对爆轰恢复的影响。结果表明,随着初始压力和内壁曲率半径的增加,爆炸传播经历了从不稳定模式到过渡模式的转变,最后达到稳定模式。在不稳定模式,过渡模式和稳定模式之间进行模式转换的临界条件分别为r(0)/ lambda = 13.7和r(0)/ lambda = 22.3,其中A是单元宽度。在不稳定和过渡模式下,当爆炸穿过弯曲部分时,爆炸结构被破坏。然而,所产生的马赫反射可以诱导新的横波的形成,从而实现重新初始化,而两个三点之间的碰撞可以逐渐增强爆炸的强度,从而可以共同促进爆炸的恢复,实现自发的传播。曲率半径不仅影响横波的形成,而且还影响马赫反射的三重点在外壁上碰撞的位置。碰撞位置会影响三点之间的碰撞,最终影响爆轰的恢复。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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