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Numerical study of single bubble rising dynamics for the variability of moderate Reynolds and sidewalls influence: A bi-phase SPH approach

机译:单泡升高动力学对中等雷诺和侧壁的变异性的数值研究:双相SPH方法

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This work presents a numerical study of the simulation of bi-phasic flow for a bubble rising in the viscous liquid. A 2D model is employed via Smoothed Particle Hydrodynamics (SPH). The liquid/bubble capillary interaction must be taken into account, implementing adequate properties of density, viscosity, and surface tension at the interface. Likewise, the simulation results are evaluated with numerical and experimental measurements from the literature in terms of terminal bubble morphology. These results are characterized by the variation of the dynamic parameters, such as the Reynold number (Re≤ 50), Eoetvoes number (Eo≤200), density ratio (Φ ≤ 1000), SPH resolution size (Δx ≤ 1/500), and the ratio between cavity width and the bubble diameter (β ≤ 8). Consequently, it is explored the independence of sidewalls on a single bubble rising, these results display different shapes and vortex regimes between the circular, ellipsoidal, and cap morphologies. Furthermore, The behavior of the bubble deformations during the high or low influence of sidewall is shown throughout cases with lateral instabilities, such as tails, break-up, and satellite bubble formation. Finally, It is demonstrated that the bi-phase SPH algorithm is robust enough, providing qualitative and quantitative information about global typical characteristics of a single rising bubble.
机译:该工作提出了对粘性液体上升的气泡的双相流模拟的数值研究。通过平滑的粒子流体动力学(SPH)使用2D模型。必须考虑液体/泡沫毛细管相互作用,实施界面处的密度,粘度和表面张力的足够性质。同样地,在终端气泡形态方面,用文献中的数值和实验测量评估模拟结果。这些结果的特征在于动态参数的变化,例如雷诺数(Re≤50),eoetvoes数(Eo≤200),密度比(φ≤1000),SPH分辨率尺寸(Δx≤1/ 500),腔宽和气泡直径(β≤8)之间的比率。因此,探讨了单个泡沫上升的侧壁的独立性,这些结果在圆形,椭圆形和帽形态之间显示不同的形状和涡旋制度。此外,在侧壁的高或低影响期间的气泡变形的行为在整个情况下示出了横向不稳定性,例如尾部,分离和卫星气泡形成。最后,证明双相SPH算法足够强大,提供关于单个上升泡的全局典型特征的定性和定量信息。

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