Hagen-Poiseuille方程
中性浮力
雷诺数
机械
惯性参考系
物理
流量(数学)
经典力学
单调函数
趋同(经济学)
流线、条纹线和路径线
动力学(音乐)
流体力学
湍流
惯性波
浮力
管道流量
计算机模拟
赫尔肖流
两相流
作者
Weile Luo,Eric J. R. Parteli,Thorsten Pöschel,Fengxian Fan
标识
DOI:10.1017/jfm.2026.11211
摘要
The inertial migration of a neutrally buoyant sphere in pipe Poiseuille flow is examined using numerical simulations. Three migration regimes are observed with increasing Reynolds number ( ${\textit{Re}}$ ): monotonic convergence to the equilibrium position, overshooting convergence and damped oscillations. The critical Reynolds numbers separating these regimes decrease with the sphere-to-pipe diameter ratio, $d/D$ . The axial entry length, $L_{p}$ , required for the sphere to reach equilibrium decreases with both ${\textit{Re}}$ and $d/D$ in the monotonic regime, but increases in the oscillatory regime. These results elucidate the dynamics of inertial migration and inform strategies for manipulating particles in confined, particle-laden flows.
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