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Building water bridges in air: Electrohydrodynamics of the floating water bridge

机译:在空气中建造水桥:浮动水桥的电流体动力学

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摘要

The interaction of electrical fields and liquids can lead to a phenomenon that defies intuition. Some famous examples can be found in electrohydrodynamics as Taylor cones, whipping jets, or noncoalescing drops. A less famous example is the floating water bridge: a slender thread of water held between two glass beakers in which a high voltage difference is applied. Surprisingly, the water bridge defies gravity even when the beakers are separated at distances up to 2 cm. In this paper, experimental measurements and simple models are proposed and discussed for the stability of the bridge and the source of the flow, revealing an important role of polarization forces on the stability of the water bridge. On the other hand, the observed flow can only be explained due to the non-negligible free charge present in the surface. In this sense, the floating water bridge can be considered as an extreme case of a leaky dielectric liquid [ J. R. Melcher and G. I. Taylor, Annu. Rev. Fluid Mech. 1, 111 (1969) ].
机译:电场和液体的相互作用会导致不符合直觉的现象。在电动流体力学中可以找到一些著名的例子,例如泰勒锥,搅打喷头或非凝聚液滴。一个不太著名的例子是浮动水桥:在两个玻璃烧杯之间夹着一条细长的水线,其中施加了高电压差。出乎意料的是,即使将烧杯分开2厘米,水桥也无法克服重力。本文提出并讨论了桥的稳定性和水源的实验测量和简单模型,揭示了极化力对水桥稳定性的重要作用。另一方面,由于表面中存在不可忽略的自由电荷,因此只能解释观察到的流动。从这个意义上讲,浮动水桥可以看作是泄漏的电介质液体的极端情况[J. R. Melcher and G. I. Taylor,Annu。 Rev.流体机械。 1,111(1969)]。

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