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Model and experiments of a drop impinging on an immersed wall

机译:水滴撞击到沉浸式墙壁上的模型和实验

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We present a model describing the rebound of a drop impinging on a rigid plane wall immersed in water. This model is based on the resolution of the drop equation of motion in an unbounded fluid in which an additional pressure force is introduced accounting for the wall effect on the drop motion. This force is computed from a film drainage simulation model during the approach of the deformable particle to the wall. Results of the model have been compared with experimental trajectories of drops impinging vertically at terminal rise velocity against a horizontal wall immersed in water at rest. These trajectories have been obtained with the help of an image processing technique. A wide range of experimental conditions has been studied (drop diameter, interfacial tension, drop viscosity, and density). In most of the cases, the model predicts the experimental trajectories within a very good accuracy (height of bouncing, deformation, number of rebounds) even in the case of a significant deformation. The numerical results show that the rebound of a deformable inclusion against a wall in water is essentially governed by the balance between the added mass force and the film pressure force exerted on the drop during the impact. The model has also been successfully tested in the case of an impinging bubble at high particle Reynolds number, based on experimental data taken from Tsao and Koch [Phys. Fluids 9, 44 (1997)]. (C) 2001 American Institute of Physics. [References: 38]
机译:我们提出了一个模型,描述了撞击到浸没在水中的刚性平面壁上的水滴的反弹。该模型基于无边界流体中运动的下落方程的分辨率,其中引入了附加压力,以考虑壁对下落运动的影响。该力是根据可变形颗粒接近壁面时的排水模拟模型计算得出的。该模型的结果已与液滴的实验轨迹进行了比较,这些液滴以最终的上升速度垂直撞击沉在水中的水平壁而垂直撞击。这些轨迹是借助图像处理技术获得的。已经研究了各种各样的实验条件(液滴直径,界面张力,液滴粘度和密度)。在大多数情况下,即使在发生重大变形的情况下,该模型也可以在非常好的精度(弹跳高度,变形,回弹数)内预测实验轨迹。数值结果表明,可变形夹杂物在水中对壁的回弹主要由附加质量力和冲击过程中施加在液滴上的薄膜压力之间的平衡决定。根据Tsao和Koch的实验数据,该模型还已经成功地测试了高雷诺数撞击气泡的情况。流体9,44(1997)。 (C)2001美国物理研究所。 [参考:38]

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