论文标题
固体分数对限制通道中悬浮液的桥接对堵塞的影响
Influence of the solid fraction on the clogging by bridging of suspensions in constricted channels
论文作者
论文摘要
每当颗粒的悬浮液通过密闭系统流动时,就会发生堵塞。堵塞的形成通常与通道横截面的减少相关。在这项研究中,我们考虑通过桥接的堵塞,即,通过形成稳定的颗粒拱形,以限制的收缩阻碍堵塞下游的颗粒的运输。为了表征悬浮液在堵塞动力学上的体积分数的作用,我们研究了颗粒悬浮液的流动通过3D打印的毫米型设备。我们系统地表征了准二维系统中非棕色颗粒的桥接,在该系统中,我们直接在粒子流动并以收缩形式形成拱门时直接对其进行可视化和跟踪。我们报告在悬浮液中不同浓度的颗粒时,在改变收缩宽度与颗粒直径比时通过桥接堵塞的条件。然后,我们使用随机模型讨论我们的结果,以合理化固体分数对堵塞概率的影响。了解堵塞形成的机制和条件是优化工程设计和开发更可靠的分配系统的重要步骤。
Clogging can occur whenever a suspension of particles flows through a confined system. The formation of clogs is often correlated to a reduction in the cross-section of the channel. In this study, we consider the clogging by bridging, i.e., through the formation of a stable arch of particles at a constriction that hinders the transport of particles downstream of the clog. To characterize the role of the volume fraction of the suspension on the clogging dynamics, we study the flow of particulate suspensions through 3D-printed millifluidic devices. We systematically characterize the bridging of non-Brownian particles in a quasi-bidimensional system in which we directly visualize and track the particles as they flow and form arches at a constriction. We report the conditions for clogging by bridging when varying the constriction width to particle diameter ratio for different concentrations of the particles in suspension. We then discuss our results using a stochastic model to rationalize the influence of solid fraction on the probability of clogging. Understanding the mechanisms and conditions of clog formation is an important step for optimizing engineering design and developing more reliable dispensing systems.