论文标题

通过粒子图像赛车测定法在水桥中自发排列的证据

Evidence for spontaneous arrangement of two-way flow in water bridge via particle image velocimetry

论文作者

Tsai, Ping-Rui, Huang, Hong-Yue, Lai, Cheng-Wei, Cheng, Yu-Ting, Huang, Chih-Yung, Tsai, Cheng-En, Lee, Yi-Chun, Hao, Hong, Hong, Tzay-Ming

论文摘要

通过重新审查了世纪的水桥问题,我们证明了它实际上是动态的,由两个同轴水流组成,这些水流沿相反的方向带有不同的电荷和流动。这种自发的分离是由不同阶段触发的,以构建水桥。最初,由H+提供动力并从正电极烧杯中流出的锥射流促进了流动。稍后建立了来自负烧杯的对立锥喷射,并被迫采取外部路线。通过使用荧光素和碳粉作为示踪剂来揭示这种自发的双向流动的排列,并且发现这两个相对的流载有非等量的通量,从而导致水净运输到负烧杯。我们设法估算了这些同轴流的流速和横截面区域,这是时间和施加电压的函数。请注意,外层上的水充当毫米管,与内部的流动牢固相互作用。这为最近报道的由铁氟烷制成的同样微型软壁中最近报道的近摩擦流提供了第一个天然但反式的例子。

By revisiting the century-old problem of water bridge, we demonstrate that it is in fact dynamic and comprises of two coaxial water currents that carry different charges and flow in opposite directions. This spontaneous separation is triggered by the different stages to construct the water bridge. Initially, a flow is facilitated by the cone jet that is powered by H+ and flows out of the positive-electrode beaker. An opposing cone-jet from negative beaker is established later and forced to take the outer route. This spontaneous arrangement of two-way flow is revealed by using fluorescein and carbon powder as tracers, and the Particle Image Velocimetry, These two opposing flows are found to carry non-equal flux that results in a net transport of water to the negative beaker. We manage to estimate the flow speed and cross-sectional area of these co-axial flows as a function of time and applied voltage. Note that the water on the outer layer functions as a millimeter tube that confines and interacts strongly with the flow inside. This provides a first natural and yet counter example to the recently reported near-frictionless flow in an equally miniatureized soft wall made from ferrofluid.

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