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Optimal Disturbances of a Dusty-Gas Plane-Channel Flow with a Nonuniform Distribution of Particles

机译:尘埃平面分布不均匀的含尘气体平面通道流动的最佳扰动

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摘要

The classical stability theory for multiphase flows, based on an analysis of one (most unstable) mode, is generalized. A method for studying an algebraic (non-modal) instability of a disperse medium, which consists in examining the energy of linear combinations of three-dimensional modes with given wave vectors, is proposed. An algebraic instability of a dusty-gas flow in a plane channel with a nonuniform particle distribution in the form of two layers arranged symmetrically with respect to the flow axis is investigated. For all possible values of governing parameters, the optimal disturbances of the disperse flow have zero wavenumber in the flow direction, which indicates their banded structure ("streaks"). The presence of dispersed particles in the flow increases the algebraic instability, since the energy of optimal disturbances in the disperse medium exceeds that for the pure-fluid flow. It is found that for a homogeneous particle distribution the increase in the energy of optimal perturbations is proportional to the square of the sum of unity and the particle mass concentration and is almost independent of particle inertia. For a non-uniform distribution of the dispersed phase, the largest increase in the initial energy of disturbances is achieved in the case when the dust layers are located in the middle between the center line of the flow and the walls.
机译:总结了基于一种(最不稳定)模式的经典多相流稳定性理论。提出了一种研究分散介质的代数(非模态)不稳定性的方法,该方法包括检查具有给定波矢量的三维模的线性组合的能量。研究了粉尘气流在平面通道中的代数不稳定性,该平面通道中的颗粒分布不均匀,呈两层形式,相对于流轴对称排列。对于所有可能的控制参数值,分散流的最佳扰动在流动方向上的波数为零,这表明它们的带状结构(“条纹”)。流中分散粒子的存在增加了代数不稳定性,因为分散介质中最佳扰动的能量超过了纯流的能量。发现对于均匀的颗粒分布,最佳扰动能量的增加与单位和和颗粒质量浓度之和的平方成比例,并且几乎与颗粒惯性无关。对于分散相的不均匀分布,当粉尘层位于流的中心线和壁之间的中间时,扰动的初始能量会最大增加。

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