论文标题
在高度倾斜的加热表面上蒸发无乙醇水滴
Evaporation of sessile ethanol-water droplets on a highly inclined heated surface
论文作者
论文摘要
在倾斜底物上的二元梗塞乙醇 - 水滴的蒸发在不同底物温度下的临界滑动角下方进行了实验研究。使用了配备CMOS摄像头和红外摄像头的定制的GONIIMETER。观察到液滴在蒸发过程中仍在前进的一侧固定,而退缩的侧合同。倾斜底物上液滴的前进和接触角中的不对称性导致通过IR图像捕获的复杂的热透明的Marangoni对流。在蒸发的早期阶段,液滴在前进的接触线周围表现出两个不同的振荡性水,而易波动性和较轻的乙醇则在后面附近产生更热,快速蒸发的细胞。随着乙醇的蒸发,富含乙醇的细胞沿倾斜层产生热搏动。随后,热模式变得与纯水液滴相似。还观察到,热溶性驱动的振荡对流随着底物温度的升高而增加。尽管对流动力学的复杂性,但蒸发率在不同的底物温度下在归一化时间中表现出普遍的行为,在蒸发的早期和晚期阶段可以通过分段线性拟合表示。
The evaporation of a binary sessile ethanol-water droplet on an inclined substrate is studied experimentally just below the critical sliding angles for different substrate temperatures. A customized goniometer equipped with a CMOS camera and an infrared (IR) camera is used. The droplet is observed to remain pinned in the advancing side during the evaporation process, while the receding side contracts. The asymmetry in the advancing and receding contact angles of the droplet on inclined substrate results in complex thermo-solutal Marangoni convection that is captured through IR images. The droplet exhibits two distinct oscillatory water-rich cold regions around the advancing contact line during the early stage of evaporation, while the more volatile and lighter ethanol creates a hotter and rapidly evaporating cell near the receding side. As ethanol evaporates away, the ethanol rich cells collapse producing thermal pulsations along the incline. Subsequently, the thermal patterns become similar to that of the pure-water droplet. It is also observed that the thermo-solutal driven oscillatory convection increases with increasing substrate temperature. Despite the complexity in convection dynamics, the evaporation rate exhibits a universal behavior in the normalized time at different substrate temperatures which can be represented by piecewise linear fits at the early and late stages of evaporation.