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A Simple Approach to Characterize Gas-Aqueous Liquid Two-phase Flow Configuration Based on Discrete Solid-Liquid Contact Electrification

机译:基于离散固液接触带电的气-液两相流流场表征的简单方法

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摘要

In this study, we first suggest a simple approach to characterize configuration of gas-aqueous liquid two–phase flow based on discrete solid-liquid contact electrification, which is a newly defined concept as a sequential process of solid-liquid contact and successive detachment of the contact liquid from the solid surface. This approach exhibits several advantages such as simple operation, precise measurement, and cost-effectiveness. By using electric potential that is spontaneously generated by discrete solid–liquid contact electrification, the configurations of the gas-aqueous liquid two-phase flow such as size of a gas slug and flow rate are precisely characterized. According to the experimental and numerical analyses on parameters that affect electric potential, gas slugs have been verified to behave similarly to point electric charges when the measuring point of the electric potential is far enough from the gas slug. In addition, the configuration of the gas-aqueous liquid two-phase microfluidic system with multiple gas slugs is also characterized by using the presented approach. For a proof-of-concept demonstration of using the proposed approach in a self-triggered sensor, a gas slug detector with a counter system is developed to show its practicality and applicability.
机译:在这项研究中,我们首先提出一种基于离散固液接触带电特征的气-液两相流配置特性的简单方法,这是一个新定义的概念,是固液接触的顺序过程和相继分离的结果。来自固体表面的接触液体。这种方法具有几个优点,例如操作简单,测量精确和成本效益高。通过使用离散的固液接触带电自发产生的电势,可以精确表征气液两相流的结构,例如气团的大小和流速。根据对影响电势的参数进行的实验和数值分析,当电势的测量点距离气团足够远时,已验证气团与点电荷的行为类似。另外,具有多个气团的气-液两相微流体系统的构造也通过使用所提出的方法来表征。为了在自触发传感器中使用所提出的方法进行概念验证,开发了带有计数器系统的气塞检测器,以显示其实用性和适用性。

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