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NUMERICAL STUDY OF DROPLET BEHAVIOR IN STRAIGHT AND L-SHAPED CHANNELS

机译:直线形和L形通道中的液滴行为的数值研究

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Numerical simulations using three-dimensional front tracking method are conducted to study the effects of droplet properties on the transient motion, rotation and deformation of a droplet during its transit in straight and L-shaped rectangular channels. The properties under investigation for straight channel are the density ratio, viscosity ratio, Reynolds number, Weber number and droplet initial position. The latter two parameters are chosen for the study of L-shaped channel. The results show that in the straight channel, despite the droplet initial positions, the droplet with the same properties ends up at the same equilibrium position. However, when the Reynolds number increases, the droplet is heavier or less viscous or droplet becomes more deformable, the droplet equilibrium position is much closer to the wall. Also, heavier or less viscous droplet exhibits higher rotational speed, which is believed to enhance oscillatory motion. As for the L-shaped channel, it is found that the droplet deformability can help to avoid the droplet from impacting upon the channel wall.
机译:进行了使用三维前沿跟踪方法的数值模拟,研究了液滴特性对液滴在直线和L形矩形通道中过渡过程中的瞬态运动,旋转和变形的影响。直通道的研究性质是密度比,粘度比,雷诺数,韦伯数和液滴初始位置。选择后两个参数来研究L形通道。结果表明,在直线通道中,尽管液滴处于初始位置,但具有相同特性的液滴最终位于相同的平衡位置。但是,当雷诺数增加时,液滴重一些或变得更粘稠,或者液滴变得更易变形,那么液滴平衡位置就更靠近壁了。同样,较重或更小的粘性液滴表现出较高的旋转速度,据信这增强了振荡运动。对于L形通道,发现液滴的可变形性可以帮助避免液滴撞击在通道壁上。

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