论文标题

分析不稳定的准毛细管通道流,其时间已解决PIV和基于RBF的超级分辨率

Analysis of an unsteady quasi-capillary channel flow with Time Resolved PIV and RBF-based super resolution

论文作者

Ratz, Manuel, Fiorini, Domenico, Simonini, Alessia, Cierpka, Christian, Mendez, Miguel A.

论文摘要

我们研究了不稳定的准毛细管通道流中加速接触线的行为。该配置由沿垂直2D通道移动的液体柱组成,向大气开放并由受控压力头驱动。分析了前进和退化的接触线,以测试经典模型的动态润湿有效性,并研究界面附近的流场。操作条件的特征是大加速度,因此以惯性为主。使用激光诱导的荧光(LIF)的图像处理检索运动弯月板的形状,而通过时间分辨的粒子图像速度法(TR-PIV)分析了附近的流场。使用适当的正交分解(POD)和径向基函数(RBF)的组合,在后处理中增强了TR-PIV测量值,以实现速度场的超分辨率。观察到大型的反旋转涡旋,并根据Q场的最大强度监测它们的进化。结果表明,基于界面速度的经典接触角度不能以宏观尺度描述接触角的演变。此外,接口动力学对流场的影响是相当大的,并且在接口下方延伸了几个毛细管长度。

We investigate the behaviour of accelerating contact lines in an unsteady quasi-capillary channel flow. The configuration consists of a liquid column that moves along a vertical 2D channel, open to the atmosphere and driven by a controlled pressure head. Both advancing and receding contact lines were analyzed to test the validity of classic models for dynamic wetting and to study the flow field near the interface. The operating conditions are characterized by a large acceleration, thus dominated by inertia. The shape of the moving meniscus was retrieved using Laser-Induced Fluorescence (LIF)-based image processing while the flow field near was analyzed via Time-Resolved Particle Image Velocimetry (TR-PIV). The TR-PIV measurements were enhanced in the post-processing, using a combination of Proper Orthogonal Decomposition (POD) and Radial Basis Functions (RBF) to achieve super-resolution of the velocity field. Large counter-rotating vortices were observed, and their evolution was monitored in terms of the maximum intensity of the Q-field. The results show that classic contact angle laws based on interface velocity cannot describe the evolution of the contact angle at a macroscopic scale. Moreover, the impact of the interface dynamics on the flow field is considerable and extends several capillary lengths below the interface.

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