论文标题

硬球悬架的Taylor-Couette流:当前理解的概述

Taylor-Couette flow of hard-sphere suspensions: Overview of current understanding

论文作者

Baroudi, Lina, Majji, Madhu V., Peluso, Stephen, Morris, Jeffrey F.

论文摘要

尽管具有惯性粒子的流动发生在各种工业和自然过程中,但对这些流量缺乏基本的了解,以及预测运输和粒子分布所需的连续级处理方程。为了进行这一努力,最近已使用泰勒 - 库特流动(TCF)系统来研究惯性下颗粒流体的流动行为。本文概述了与中性浮力非棕色悬浮液的TCF相关的实验,理论和计算工作,并重点介绍了有限尺寸粒子对一系列流动过渡和流动结构的影响。颗粒取决于其大小和浓度,与牛顿流体行为产生了几种显着偏差,包括移动与流动结构过渡相对应的雷诺数和改变流动中可能存在的结构。此外,颗粒也可能取决于流动结构,从而导致滞后作用,从而进一步使流动行为复杂化。讨论了描述实验观察的理论和计算建模工作的当前状态,并提供了对未来的未来方向提出的建议,以提高对惯性粒子含量流的基本理解。

Although inertial particle-laden flows occur in a wide range of industrial and natural processes, there is both a lack of fundamental understanding of these flows and continuum-level governing equations needed to predict transport and particle distribution. Towards this effort, the Taylor-Couette flow (TCF) system has been used recently to study the flow behavior of particle-laden fluids under inertia. This article provides an overview of experimental, theoretical, and computational work related to the TCF of neutrally buoyant non-Brownian suspensions, with an emphasis on the effect of finite-sized particles on the series of flow transitions and flow structures. Particles, depending on their size and concentration, cause several significant deviations from Newtonian fluid behavior, including shifting the Reynolds number corresponding to transitions in flow structure and changing the possible structures present in the flow. Furthermore, particles may also migrate depending on the flow structure, leading to hysteretic effects that further complicate the flow behavior. The current state of theoretical and computational modeling efforts to describe the experimental observations is discussed, and suggestions for potential future directions to improve the fundamental understanding of inertial particle-laden flows are provided.

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