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Effect of surfactant concentration on the beginning of intensive cooling regime in subcooled water

机译:表面活性剂浓度对脱水水中密集冷却状态开始的影响

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The work aims to study the beginning of an intensive heat transfer regime during quenching process, when high-temperature bodies are cooled in liquids. This process occurred in numerous applications such as metal treatment and NPP safety systems. The experiments were carried out by cooling a high-temperature nickel sphere in subcooled liquids with different subcoolings to the saturation temperature. The experiments were conducted in pure water and in water-surfactant solutions with various concentrations under atmospheric pressure. The surfactant was sulfonol (alkylbenzene sulfonate), which added to cooling water. The concentrations of sulfonol were 0.1, 0.25, 0.5, 1 and 2%. The obtained temperature-time dependences (cooling thermograms) and data on the transition temperatures made it possible to reveal the regularities of the influence of sulfonol concentration in the cooling water on the beginning of the intensive cooling regime. Furthermore, experiments have demonstrated a strong influence of surface condition, its oxidation and contamination.
机译:当高温体在液体中冷却时,该工作旨在研究淬火过程中强化传热制度的开始。该过程发生在许多应用中,例如金属处理和NPP安全系统。通过用不同的过冷在亚过冷液体中冷却到饱和温度的水中的高温镍球来进行实验。实验在纯水和水 - 表面活性剂溶液中,在大气压下具有各种浓度。表面活性剂是磺醇(烷基苯磺酸盐),其加入冷却水中。磺醇浓度为0.1,0.25,0.5,1和2%。所获得的温度 - 时间依赖性(冷却热量影)和转变温度的数据使得可以在集约化冷却状态的开始时揭示磺酚浓度在冷却水中的影响的规律。此外,实验表明了表面状况,氧化和污染的强烈影响。

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