论文标题
Melcher-Taylor实验设置中的电毛细血管流
Electrocapillary flow in Melcher-Taylor experimental setup
论文作者
论文摘要
在研究了Melcher和Taylor的经典实验的密闭配置中电毛细管驱动的两相流。重介质液体(玉米油)的流动的计算流线定性地表示相应的实验图像。随着电气毛细血管强迫的增加,流动模式会发生变化,因此主循环局部在边界附近定位,电势较大。当电介质液体被介电液体传导不良的代替时,由于焦耳加热,系统变为非等温度。然后,流也由浮力和热毛细血管对流驱动,其作用变得明显强,而不是电毛细血管毛细血管。随着电导率的增加,与另外两种相比,电毛细管效应进一步削弱,而电毛皮和热毛皮力在界面的中央部分保持可比性,在界面的中心部分,热毛皮力会改变其符号。结果表明,对两相模型的考虑是必须在较重的较重流体中获得正确的流动模式。 Lippmann方程将电诱导的表面张力与不均匀的表面电势连接起来,在等温和非等热配方方面都经过数值验证,并且发现它们在两个配方中都持有。
Electrocapillary-driven two-phase flows in a confined configuration of a classical experiment of Melcher and Taylor are studied. The computed streamlines of the flow of the heavier dielectric liquid (corn oil) qualitatively represents the corresponding experimental image. With the increase of electrocapillary forcing, the flow pattern changes, so that the main circulation localizes near boundary with a larger electric potential. When a dielectric liquid is replaced by a poorly conducting one, the system becomes non-isothermal owing to the Joule heating. Then the flow is driven also by buoyancy and thermocapillary convection, whose effect becomes noticeably stronger than the electrocapillary one. With the increase of electric conductivity, the electrocapillary effect is further weakened compared to the two others, while the electrocapillary and thermocapillary forces remain comparable at the central part of the interface, where the thermocapillary force changes its sign. The results show that consideration of the two-phase model is mandatory for obtaining correct flow patterns in the lower heavier fluid. The Lippmann equation, connecting electrically induced surface tension with non-uniform surface electric potential, is numerically verified for both isothermal and non-isothermal formulations and was found to hold in both of them.