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液滴动力学与滴状冷凝强化综述:理论、实验与应用

Review of droplet dynamics and dropwise condensation enhancement: Theory, experiments and applications.

作者信息

Wang Xin, Xu Bo, Chen Zhenqian, Del Col Davide, Li Dong, Zhang Leigang, Mou Xinzhu, Liu Qiusheng, Yang Yang, Cao Qian

机构信息

School of Energy and Environment, Southeast University, Nanjing, PR China.

School of Energy and Environment, Southeast University, Nanjing, PR China; Key Laboratory of Energy Thermal Conversion and Control of Ministry of Education, School of Energy and Environment, Southeast University, Nanjing, PR China; Jiangsu Provincial Key Laboratory of Solar Energy Science and Technology, School of Energy and Environment, Southeast University, Nanjing, PR China.

出版信息

Adv Colloid Interface Sci. 2022 Jul;305:102684. doi: 10.1016/j.cis.2022.102684. Epub 2022 Apr 29.

Abstract

Droplet dynamics and condensation phenomena are widespread in nature and industrial applications, and the fundamentals of various technological applications. Currently, with the rapid development of interfacial materials, microfluidics, micro/nano fabrication technology, as well as the intersection of fluid mechanics, interfacial mechanics, heat and mass transfer, thermodynamics and reaction kinetics and other disciplines, the preparation and design of various novel functional surfaces have contributed to the local modulation of droplets (including nucleation, jumping and directional migration) and the improvement of condensation heat transfer, further deepening the understanding of relevant mechanisms. The wetting and dynamic characteristics of droplets involve complex solid-liquid interfacial interactions, so that the local modulation of microdroplets and the extension of enhanced condensation heat transfer by means of complex micro/nano structures and hydrophilic/hydrophobic properties is one of the current hot topics in heat and mass transfer research. This work presents a detailed review of several scientific issues related to the droplet dynamics and dropwise condensation heat transfer under the influence of multiple factors (including fluid property, surface structure, wettability, temperature external field, etc.). Firstly, the basic theory of droplet wetting on the solid wall is introduced, and the mechanism of solid-liquid interfacial interaction involving droplet jumping and directional migration on the functional surfaces under the various influencing factors is discussed. Optimizing the surface structure for the local modulation of droplets is of guidance for condensation heat transfer. Secondly, we summarize the existing theoretical models of dropwise condensation applicable to various functional surfaces and briefly outline the current numerical models for simulating dropwise condensation at different scales, as well as the fabricating techniques of coatings and functional surfaces for enhancing heat transfer. Finally, the relevant problems and challenges are summarized and future research is discussed.

摘要

液滴动力学和冷凝现象在自然界和工业应用以及各种技术应用的基础原理中广泛存在。当前,随着界面材料、微流体、微/纳制造技术的迅速发展,以及流体力学、界面力学、传热传质、热力学和反应动力学等多学科的交叉融合,各种新型功能表面的制备和设计有助于实现液滴的局部调控(包括成核、跳跃和定向迁移)以及冷凝传热的强化,进一步深化了对相关机理的认识。液滴的润湿性和动力学特性涉及复杂的固 - 液界面相互作用,因此借助复杂的微/纳结构和亲水/疏水特性实现微滴的局部调控以及强化冷凝传热的拓展是当前传热传质研究的热点之一。本文详细综述了在多种因素(包括流体性质、表面结构、润湿性、温度外场等)影响下与液滴动力学和滴状冷凝传热相关的几个科学问题。首先,介绍了液滴在固体壁面上的润湿基本理论,讨论了在各种影响因素下功能表面上涉及液滴跳跃和定向迁移的固 - 液界面相互作用机理。优化表面结构以实现液滴的局部调控对冷凝传热具有指导意义。其次,总结了适用于各种功能表面的现有滴状冷凝理论模型,简要概述了当前不同尺度下模拟滴状冷凝的数值模型,以及用于强化传热的涂层和功能表面的制备技术。最后,总结了相关问题和挑战,并对未来研究进行了讨论。

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