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Experimental and numerical research of liquid contact angles on solid surfaces under evaporation conditions: a review

机译:蒸发条件下固体表面液体接触角度的实验性和数值研究:综述

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The liquid contact angle on a solid surface is important in evaporation processes, which characterizes the wettability, and the spread of liquid films or droplets on the working surface. Thus, it critically affects heat and mass transfer, and evaporation performance accordingly. The evaporating droplet contact angle is complicated, accompanied by internal flow, heat/mass transfer, and phase change, and has received considerable attention in recent years. This paper summarizes the recent research progress of the measurement and simulation methods for determining the liquid contact angles of evaporation processes, including experimental approaches such as the sessile droplet, Wilhelmy and inclined plate methods, as well as numerical approaches such as the molecular dynamics, computational fluid dynamics, and lattice Boltzmann methods. The principles, applicable conditions, and limitations of these methods are analyzed and compared. This paper also discusses the measurement methods and effects of influencing factors related to the evaporating droplet contact angle, such as temperature and velocity distribution. Besides, it is discussed to enhance liquid evaporation by changing the droplet contact angle. Finally, a brief summary and suggestions for future work are presented.
机译:固体表面上的液体接触角在蒸发过程中是重要的,其表征润湿性,以及液体膜或液滴在工作表面上的扩散。因此,它批判性地影响热量和传质,并相应地蒸发性能。蒸发液滴接触角复杂,伴随着内部流量,热/传质和相变,近年来得到了相当大的关注。本文总结了最近测量和模拟方法的研究进展,用于确定蒸发过程的液体接触角度,包括术术液滴,WILHELMY和倾斜板方法等实验方法,以及数值方法,如分子动力学,计算流体动力学和格子螺栓玻璃法。分析并比较了这些方法的原理,适用条件和限制。本文还讨论了与蒸发液滴接触角相关的影响的测量方法和影响,例如温度和速度分布。此外,讨论通过改变液滴接触角来提高液体蒸发。最后,提出了对未来工作的简要摘要和建议。

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