论文标题

气泡和充满颗粒粒子的湍流

Bubbly and Buoyant Particle-Laden Turbulent Flows

论文作者

Mathai, Varghese, Lohse, Detlef, Sun, Chao

论文摘要

与层流相比,流体湍流通常与更强的阻力,更大的传热和更有效的混合有关。在许多天然和工业环境中,湍流流动含有分散气泡和光颗粒的悬浮液。最近,通过使用实验和高分辨率直接数值模拟,已经大大关注了这种流动的行为和潜在物理。这篇综述总结了我们目前对起泡和充满颗粒颗粒的湍流的各种现象学方面的理解。我们首先讨论不同的动力学状态,包括越过的轨迹和唤醒诱导的颗粒振荡的动力模式,以及在墙壁附近或涡流结构内,气泡和颗粒优先积聚的机制。然后,我们解决了某些范式的湍流(例如均质的各向同性湍流,通道流,泰勒 - couetter湍流和热驱动的湍流)如何通过这些分散的气泡和浮力颗粒而修改。我们以摘要点和未来的研究问题列表结尾。

Fluid turbulence is commonly associated with stronger drag, greater heat transfer, and more efficient mixing than in laminar flows. In many natural and industrial settings, turbulent liquid flows contain suspensions of dispersed bubbles and light particles. Recently, much attention has been devoted to understanding the behavior and underlying physics of such flows by use of both experiments and high-resolution direct numerical simulations. This review summarizes our present understanding of various phenomenological aspects of bubbly and buoyant particle-laden turbulent flows. We begin by discussing different dynamical regimes, including those of crossing trajectories and wake-induced oscillations of rising particles, and regimes in which bubbles and particles preferentially accumulate near walls or within vortical structures. We then address how certain paradigmatic turbulent flows, such as homogeneous isotropic turbulence, channel flow, Taylor-Couette turbulence, and thermally driven turbulence, are modified by the presence of these dispersed bubbles and buoyant particles. We end with a list of summary points and future research questions.

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