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Clustering in Euler-Euler and Euler-Lagrange simulations of unbounded homogeneous particle-laden shear

机译:在欧拉 - 欧拉和欧拉拉格兰州叠层剪切中的聚类

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Particle-laden flows of sedimenting solid particles or droplets in a carrier gas have strong inter-phase coupling.Even at low particle volume fractions, the two-way coupling can be significant due to the large particle to gas density ratio.In this semi-dilute regime, the slip velocity between phases leads to sustained clustering that strongly modulates the overall flow.The analysis of perturbations in homogeneous shear reveals the process by which clusters form: (i) the preferential concentration of inertial particles in the stretching regions of the flow leads to the formation of highly concentrated particle sheets, (ii) the thickness of the latter is controlled by particle-trajectory crossing, which causes a local dispersion of particles, (iii) a transverse Rayleigh–Taylor instability, aided by the shear-induced rotation of the particle sheets towards the gravity normal direction, breaks the planar structure into smaller clusters.Simulations in the Euler–Lagrange formalism are compared to Euler–Euler simulations with the two-fluid and anisotropic-Gaussian methods.It is found that the two-fluid method is unable to capture the particle dispersion due to particle-trajectory crossing and leads instead to the formation of discontinuities.These are removed with the anisotropic-Gaussian method which derives from a kinetic approach with particle-trajectory crossing in mind.
机译:在载气中沉降的固体颗粒或液滴的带有微粒的流具有在低的粒子体积分数强相间coupling.Even,耦合双向可显著由于大粒子的气体密度ratio.In此半稀制度,相导致持续聚类强烈调制均质剪切扰动的整体flow.The分析之间的滑动速度揭示由簇形成过程:(ⅰ)惯性颗粒在流动的拉伸区域的优先浓度导致高浓度的粒子的片材的形成,(ii)所述后者的厚度由粒子轨迹相交,从而导致颗粒的局部色散,(ⅲ)的横向瑞利 - 泰勒不稳定,由剪切引起的辅助控制朝向重力法线方向上的粒子片的旋转时,打破了平面结构成在欧拉 - 拉格朗日形式主义较小clusters.Simulations是COMPAR ED欧拉 - 欧拉模拟与双流体和各向异性高斯methods.It发现该双流体的方法是无法捕捉粒子分散液由于颗粒轨迹交叉和引线而不是discontinuities.These被形成有从在考虑粒子轨迹交叉处的动能的方法导出各向异性高斯方法除去。

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