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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Electric and capillary instability of liquid rising between heated/cooled parallel plates and subjected to phase change: DC on perfect dielectric liquids
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Electric and capillary instability of liquid rising between heated/cooled parallel plates and subjected to phase change: DC on perfect dielectric liquids

机译:加热/冷却平行板之间的电气和毛细管不稳定性升高,并进行相变:DC在完美的介电液体上

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摘要

Based on Lucas–Washburn's seminal works, a simple model governing the flow inside a narrow channel, partly dipped into a large pool filled with a dielectric liquid, is presented. The channel walls are electrically polarized and can be warmer or cooler than the pool liquid using an appropriate heating and cooling device. The liquid dielectric constant is assumed varying linearly with temperature and evaporation or condensation can occur at the meniscus surface. Linear stability analysis is performed near the equilibrium position demonstrating various effects of dielectrophoretic, capillary, gravity and viscous forces. For the investigated liquid's volatility, it is shown that only sufficiently heated electrodes can exhibit instabilities about equilibrium position, whereas cooling these electrodes leads always to an asymptotically stable liquid motion. A numerical investigation is also performed on the transient regime showing either monotonic or damped oscillatory liquid motion depending on viscous, capillary and dielectric effects. If channel walls are heated and the electric field magnitude is above a specific and finite threshold, liquid can be pushed out of the gap, preventing reentrance. This effect can lead to undesirable walls dry-out that would be detrimental to two-phase heat transfer devices. A comparative survey is also performed on two liquids typically found in applications involving thermo-electrohydrodynamics, namely hfe-7100 and hfe-7300.
机译:基于Lucas-Washburn的精美作品,提出了一种控制狭窄通道内流量的简单模型,部分浸入填充有介电液体的大型池中。沟道壁是电极化的,并且使用适当的加热和冷却装置可以比池液更暖或冷却。液态介电常数被呈线性地随温度和蒸发或冷凝器在弯月面表面发生变化。线性稳定性分析在平衡位置附近进行,示出了介电泳,毛细管,重力和粘性力的各种影响。对于所研究的液体的波动性,示出仅具有足够加热的电极可以表现出大量均衡位置的不稳定性,而冷却这些电极总是引入渐近稳定的液体运动。在瞬态调节器上还执行数值研究,该瞬态调节器显示根据粘性,毛细管和介电效应的单调或阻尼振荡液体运动。如果沟道壁被加热并且电场幅度高于特定和有限阈值,则可以从间隙中推出液体,防止重圈。这种效果可以导致不希望的壁干燥,这对两相传热装置有害。对比较调查也对通常在涉及热型电流动力学的应用中发现的两种液体进行,即HFE-7100和HFE-7300。

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