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Mechanism Study on Motion of the Droplet on a Slanted Smooth Surface under Horizontal Airflow

机译:水平气流下倾斜光滑表面上液滴运动的机制研究

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Aiming at the process of the droplet motion on a slanted smooth substrate surface driven by horizontal airflow velocity, a numerical simulation model of droplet on a slanted smooth substrate surface was established based on an arbitrary Lagrange-Euler method. Combined with the numerical simulation and experimental analysis, the motion state of the droplet and the distribution characteristics of the airflow velocity in the direction perpendicular to the slanted smooth surface near the bottom contact line at the lower end of the droplet were studied at different horizontal airflow velocity. It is considered that there were four regions in the airflow velocities: the low-velocity non-linear region close to the wall, the linear zone, non-linear transition zone and high-speed linear zone, of which h1 = 0.25 mm, h2 = 0.9 rnm, h3 = 1.4 mm. The results show that the droplet moved in a spreading-shrinking manner on the slanted smooth substrate surface under the action of gravity and wind force. The experimental results verify the correctness of the spreading-shrinking movement of the droplet on a slanted smooth surface. Based on the numerical simulation and experimental analysis, it is considered that the instability of liquid-gas free interface affects the movement of the three-phase contact line, the deformation of the droplet on the windward side was large and on the leeward side was small.
机译:瞄准通过水平气流速度驱动的倾斜光滑基板表面上的液滴运动的过程,基于任意拉格朗日 - 欧拉方法建立了倾斜光滑基板表面上的液滴数值模拟模型。结合数值模拟和实验分析,在不同的水平气流下研究了液滴的液滴的运动状态和垂直于液滴下端的底部接触线附近的倾斜光滑表面附近的倾斜光滑表面的速度的分布特性。速度。据认为,气流速度中有四个区域:靠近墙壁的低速非线性区域,线性区域,非线性过渡区和高速线性区域,其中H 1 = 0.25 mm,h 2 = 0.9 rnm,h 3 = 1.4毫米。结果表明,在重力和风力的作用下,液滴在倾斜的光滑基板表面上以散射率缩小的方式移动。实验结果验证了液滴在倾斜光滑表面上的扩散缩小运动的正确性。基于数值模拟和实验分析,认为液体气体自由界面的不稳定性影响了三相接触线的运动,迎风侧的液滴的变形大,在背风侧较小。

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