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Acoustic propagation in inhomogeneous fluids: regularization via the introduction of fine particles

机译:非均匀流体中的声学传播:通过引入细颗粒进行正则化

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摘要

IT IS SHOWN, USING ANALYTICAL METHODOLOGIES, that the velocity field blow-up suffered by vertically ascending acoustic waves in an isothermal atmosphere can be eliminated via the introduction of fine particles. Assuming the inhomogeneous generalization of the particle-laden flow model known as the (linearized) Marble-Thompson model-I, it is established that bounded, exponentially decreasing, shock amplitudes can be obtained provided the mass fraction of particles exceeds a critical value, for which an exact expression is derived. Lastly, supporting numerical results are presented, special cases are discussed, and possible follow-on studies are noted.
机译:使用分析方法示出了通过引入细颗粒可以消除通过垂直上升声波所遭受的垂直上升声波所患者的速度场吹扫。假设称为(线性化)大理石 - 汤普森模型-i的粒子载体流动模型的不均匀泛化,建立有界,指数降低,可以获得的减震幅度,条件是颗粒的质量分数超过临界值,适用于派生精确表达式。最后,提出了支持数值结果,讨论了特殊情况,并注意到可能的后续研究。

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