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On the propagation and multiple reflections of a blast wave travelling through a dusty gas in a closed box

机译:爆炸波在密闭盒子中传播通过多尘气体的传播和多重反射

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摘要

This paper concerns the propagation of shock waves in an enclosure filled with dusty gas. The main motivation for this problem is to probe the effect on such dynamics of solid particles dispersed in the fluid medium. This subject, which has attracted so much attention over recent years given its important implications in the study of the structural stability of systems exposed to high-energy internal detonations, is approached here in the framework of a hybrid numerical two-way coupled Eulerian-Lagrangian methodology. In particular, insights are sought by considering a relatively simple archetypal setting corresponding to a shock wave originating from a small spherical region initialized on the basis of available analytic solutions. The response of the system is explored numerically with respect to several parameters, including the blast intensity (via the related value of the initial shock Mach number), the solid mass fraction (mass load), and the particle size (Stokes number). Results are presented in terms of pressure-load diagrams. Beyond practical applications, it is shown that a kaleidoscope of fascinating patterns is produced by the “triadic” relationships among multiple shock reflections events and particle-fluid and particle-wall interaction dynamics. These would be of great interest to researchers and scientists interested in fundamental problems relating to the general theory of pattern formation in complex nonlinear multiphase systems.
机译:本文涉及冲击波在充满粉尘气体的外壳中的传播。该问题的主要动机是探究对分散在流体介质中的固体颗粒的这种动力学的影响。由于该问题在研究暴露于高能内部爆轰的系统的结构稳定性中具有重要意义,因此近年来引起了极大的关注,在混合数值双向耦合欧拉-拉格朗日方程的框架中对此问题进行了探讨。方法。特别地,通过考虑相对简单的原型设置来寻求见解,该原型设置对应于源自基于可用解析解而初始化的小球形区域的冲击波。关于几个参数,从数值上探索了系统的响应,包括爆炸强度(通过初始冲击马赫数的相关值),固体质量分数(质量载荷)和粒径(斯托克斯数)。结果以压力-载荷图表示。除实际应用外,还显示出令人着迷的图案的万花筒是由多次冲击反射事件与颗粒-流体和颗粒-壁相互作用动力学之间的“三重”关系产生的。对于对与复杂的非线性多相系统中的图形形成的一般理论有关的基本问题感兴趣的研究人员和科学家,这些将非常感兴趣。

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