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Electrohydrodynamic Injection Converters

机译:电液动力注入转换器

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摘要

This study is the continuation of the work devoted to electrochemical electrohydrodynamic (EHD) converters. The goal of this study is the computer simulation of the formation and development of the EHD flow in a symmetric and grid electrode system located in a channel with dielectric walls. Three types of EHD grid converters, namely, defocusing, symmetric, and focusing systems were investigated. The physical causes of the appearance of return vortices in defocusing electrode systems are explained. This is due to the formation of the charge plug in the behind-the-electrode region, which retards the through pumping of the fluid. It is shown that, in order to eliminate the charge plug, it is necessary to arrange one counter electrode along the flow's axis and to select the impurity composition of the fluid so that the injection also occurs on the surface of the passive electrode rather than the active one only. In this case, the bipolar charge structure compensating for the return retarding effect is formed in the behind-the-electrode region. It was originally suggested to use focusing electrode systems to enhance the effect of the through pumping.
机译:这项研究是致力于电化学电液动力学(EHD)转换器的工作的延续。这项研究的目的是对位于带有电介质壁的通道中的对称网格电极系统中EHD流的形成和发展进行计算机模拟。研究了三种EHD网格转换器,即散焦,对称和聚焦系统。解释了散焦电极系统中回旋涡出现的物理原因。这是由于在电极后部区域中形成了电荷塞,从而阻碍了流体的泵送。结果表明,为了消除电荷塞,有必要沿流轴布置一个对电极,并选择流体的杂质成分,以便注入也发生在无源电极的表面而不是注入电极的表面。仅活动一个。在这种情况下,在电极后区域中形成补偿返回延迟效应的双极电荷结构。最初建议使用聚焦电极系统来增强直通泵的效果。

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