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Experimental investigation of inclined liquid water jet flow onto vertically located superhydrophobic surfaces

机译:倾斜液体喷水流在垂直放置的超疏水表面上的实验研究

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摘要

In this study, the behaviour of an inclined water jet, which is impinged onto hydrophobic and superhydrophobic surfaces, has been investigated experimentally. Water jet was impinged with different inclination angles (15°–45°) onto five different hydrophobic surfaces made of rough polymer, which were held vertically. The water contact angles on these surfaces were measured as 102°, 112°, 123°, 145° and 167° showing that the last surface was superhydrophobic. Two different nozzles with 1.75 and 4 mm in diameters were used to create the water jet. Water jet velocity was within the range of 0.5–5 m/s, thus the Weber number varied from 5 to 650 and Reynolds number from 500 to 8,000 during the experiments. Hydrophobic surfaces reflected the liquid jet depending on the surface contact angle, jet inclination angle and the Weber number. The variation of the reflection angle with the Weber number showed a maximum value for a constant jet angle. The maximum value of the reflection angle was nearly equal to half of the jet angle. It was determined that the viscous drag decreases as the contact angle of the hydrophobic surface increases. The drag force on the wall is reduced dramatically with superhydrophobic surfaces. The amount of reduction of the average shear stress on the wall was about 40%, when the contact angle of the surface was increased from 145° to 167°. The area of the spreading water layer decreased as the contact angle of the surface increased and as the jet inclination angle, Weber number and Reynolds number decreased.
机译:在这项研究中,已经通过实验研究了倾斜水射流的行为,该射流撞击在疏水和超疏水表面上。水射流以不同的倾斜角度(15°–45°)撞击到由粗糙聚合物制成的五个不同的疏水表面上,这些表面垂直固定。这些表面上的水接触角经测量为102°,112°,123°,145°和167°,表明最后一个表面是超疏水的。使用直径为1.75和4毫米的两个不同的喷嘴来产生水射流。水喷射速度在0.5-5 m / s的范围内,因此在实验过程中,韦伯数从5变到650,雷诺数从500变到8,000。疏水表面根据表面接触角,射流倾斜角和韦伯数来反射液体射流。对于恒定的喷射角,反射角随韦伯数的变化显示出最大值。反射角的最大值几乎等于喷射角的一半。已经确定,随着疏水表面的接触角增加,粘性阻力减小。超疏水表面可大大降低墙壁上的阻力。当表面的接触角从145°增加到167°时,壁上平均剪应力的减少量约为40%。随着表面接触角的增加和射流倾斜角,韦伯数和雷诺数的减小,铺展水层的面积减小。

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