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Breakup of a supported drop of a viscous, conducting liquid in a uniform field

机译:支撑的粘性液滴的破裂,在均匀场中传导液体

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摘要

Numerical computations and order-of-magnitude estimates are used to describe the time evolution of a drop of a very viscous liquid of finite electrical conductivity attached to a metallic plate which is suddenly subject to a uniform electric field. Under the action of the electric stresses induced at its surface, the drop elongates in the direction of the field, and charged droplets are emitted when the strength of the field is higher than a certain critical value. A stationary emission mode exists in which the attached drop develops a conical tip and a thin jet, with small droplets emitted from the end of the jet in a process that involves the formation of a long ligament. The flow rate and the electric current carried by the stream of droplets emitted in this mode are determined by the flow and the transfer of charge in the attached drop, in particular in a small region around its tip and in a leading stretch of the jet, where the solution is nearly stationary despite the transient character of the jet further downstream. A simplified analysis of the stationary regions is carried out to elucidate the effects of the physical properties of the liquid _electrical conductivity, permittivity, viscosity, and surface tension_, the volume of the drop, and the strength of the applied field. For high electrical conductivities and applied fields well above its critical value, the electrical and viscous stresses are large compared to surface tension stresses, and their balance gives a flow rate proportional to the square of the applied field. The electric current is then that of a stationary electrified jet fed with this flow rate.
机译:数值计算和量级估计用于描述附着在突然受到均匀电场作用的金属板上的,具有有限电导率的非常粘稠的液体的液滴的时间演化。在其表面感应的电应力的作用下,液滴在电场方向上拉长,并且当电场强度高于某个临界值时,带电液滴就会发出。存在固定的发射模式,在该模式中,附着的液滴形成圆锥形尖端和细射流,在涉及形成长韧带的过程中,细小液滴从射流的末端发​​出。在这种模式下发射的液滴流所携带的流量和电流取决于所附着液滴中的电荷流动和转移,尤其是在液滴尖端附近的小区域以及射流的前伸部分,尽管射流的瞬态特性在更下游处,但溶液几乎是静止的。进行了固定区域的简化分析,以阐明液体的物理性质的影响,如电导率,介电常数,粘度和表面张力,液滴的体积以及所施加电场的强度。对于高电导率和远高于其临界值的施加场,与表面张力应力相比,电应力和粘滞应力要大,并且它们的平衡给出的流量与施加场的平方成比例。这样,电流就是固定的带电喷射流的电流。

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    Higuera Antón Francisco;

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  • 年度 2008
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