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Surfactants for Bubble Removal against Buoyancy

机译:用于去除浮力的表面活性剂

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摘要

The common phenomenon of buoyancy-induced vapor bubble lift-off from a heated surface is of importance to many areas of science and technology. In the absence of buoyancy in zero gravity of space, non-departing bubbles coalesce to form a big dry patch on the heated surface and heat transfer deteriorates despite the high latent heat of vaporization of water. The situation is worse on an inverted heater in earth gravity where both buoyancy and surface tension act upwards to oppose bubble removal. Here we report a robust passive technique which uses surfactants found in common soaps and detergents to avoid coalescence and remove bubbles downwards, away from an inverted heater. A force balance model is developed to demonstrate that the force of repulsion resulting from the interaction of surfactants adsorbed at the neighboring liquid-vapor interfaces of the thin liquid film contained between bubbles is strong enough to overcome buoyancy and surface tension. Bubble removal frequencies in excess of ten Hz resulted in more than twofold enhancement in heat transfer in comparison to pure water. We believe that this novel bubble removal mechanism opens up opportunities for designing boiling-based systems for space applications.
机译:浮力引起的蒸汽气泡从受热表面剥离的常见现象对许多科学技术领域都很重要。在零重力空间中没有浮力的情况下,尽管水汽化潜热很高,但未分离的气泡会聚结,在受热表面上形成一个大的干燥斑块,并且传热会变差。在地心引力倒置的加热器上,情况更糟,因为浮力和表面张力都向上作用以阻止气泡去除。在这里,我们报告了一种强大的被动技术,该技术使用常见的肥皂和洗涤剂中的表面活性剂来避免聚结并向下去除气泡,远离倒置加热器。建立了一个力平衡模型,以证明由吸附在气泡之间的薄膜状液膜的相邻液-气界面处的表面活性剂相互作用而产生的排斥力足以克服浮力和表面张力。与纯水相比,超过十赫兹的气泡去除频率导致传热增强两倍以上。我们相信,这种新颖的气泡去除机制为设计用于太空应用的沸腾系统提供了机会。

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