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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Flow electrification phenomenon for newtonian and non-newtonian liquids: influence of liquid conductivity, viscosity and shear stress
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Flow electrification phenomenon for newtonian and non-newtonian liquids: influence of liquid conductivity, viscosity and shear stress

机译:牛顿和非牛顿液体的流带电现象:液体电导率,粘度和剪切应力的影响

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摘要

The electrostatic charge generation that appears when hydrocarbons flow through pipes has been extensively studied over time. This phenomenon is very complex, and the charge generation depends on the nature of the liquid and solid involved in this process. This paper presents a study concerning the electrification phenomenon for different Newtonian and non-Newtonian liquids, with different conductivities and viscosities as well as for various pipe diameters. A detailed methodology, in order to reliably measure the streaming current, and to determine the space charge located at the wall when the double layer is fully developed (pwȡE;) and effective rate constant (physico-chemical reactions coefficient) (K) is also presented. It was observed that the streaming current increases with the electrical conductivity, and with the oils viscosity. The correlation between the shear stress and the flow electrification phenomenon at the solid/liquid interface is then analyzed.
机译:随着时间的流逝,对碳氢化合物流经管道时出现的静电荷的产生进行了广泛的研究。这种现象非常复杂,电荷的产生取决于此过程中所涉及的液体和固体的性质。本文针对电导率和粘度以及管径不同的不同牛顿液体和非牛顿液体的带电现象进行了研究。一种详细的方法,以可靠地测量流动电流,并确定双层完全展开时的壁电荷(p wȡE; )和有效速率常数(理化)还给出了反应系数(K)。观察到流过电流随着电导率和油粘度的增加而增加。然后,分析了固/液界面处的剪切应力与流动带电现象之间的相关性。

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