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Steam condensation heat transfer on lubricant-infused surfaces

机译:润滑剂注入表面上的蒸汽冷凝热传递

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摘要

Steam condensation is fundamental to several industrial processes, including power generation, desalination, and water harvesting. Lubricant-infused surfaces (LISs) promote sustained dropwise condensation, leading to significantly higher heat transfer performance that trades off with durability. Here, we present a systematic study on lubricant-infused copper tubes in a partial vacuum environment typical of power plant condensers to elucidate the influence of the design parameters—texturing, functionalizing agent, and lubricant viscosity—on condensation heat transfer performance and durability. Heat transfer effectiveness is introduced as a relevant parameter to quantify the effects of condensation heat transfer coefficient enhancement on the overall system heat transfer performance. Analytical expressions are developed for lubricant retention fraction and heat transfer effectiveness in terms of Bond number, viscosity ratio, and a dimensionless logarithmic mean temperature difference that can be used for predicting the performance of a LIS or for designing surfaces for a desired performance.
机译:蒸汽凝结是若干工业过程的基础,包括发电,海水淡化和液体收获。润滑剂注入的表面(Liss)促进持续滴加缩合,导致耐用性脱离的传热性能明显较高。在这里,我们对典型的发电厂冷凝器的典型真空环境中的润滑剂注入铜管进行了系统研究,以阐明设计参数纹理,官能化剂和润滑剂粘度对冷凝传热性能和耐久性的影响。引入传热效果作为相关参数,以量化冷凝传热系数增强对整体系统传热性能的影响。在粘合数,粘度比和无量纲对数平均平均温度差方面开发了分析表达,以及可用于预测LIS的性能或用于设计所需性能的表面的无量纲对数平均温差。

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