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首页> 外文期刊>Journal of Materials Science >Reduction of fluid friction on the surface coated with TiO _2 photocatalyst under UV illumination
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Reduction of fluid friction on the surface coated with TiO _2 photocatalyst under UV illumination

机译:在紫外线照射下减少涂有TiO _2光催化剂的表面上的流体摩擦

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Fluid friction in a cylindrical glass pipe coated with TiO _2 was investigated before and after UV illumination. The crystalline phase of TiO _2 was anatase. Its coating thickness was about 90 nm. The frictional drag was evaluated by measuring the pressure loss in the pipe. Before UV illumination, the pressure loss changed gradually from a laminar flow to the turbulent one in the transition range, where the Reynolds number was around 3,300. However, the pressure loss after UV illumination maintained a laminar flow until the Reynolds number was 6,000. The reduction rate of the frictional drag increased concomitantly with increasing flow velocity. Particle image velocimetry analysis revealed that the fluid friction would be reduced by suppressing unstable flow around the wall of the glass pipe. These results imply that highly hydrophilic TiO _2 surface effectively reduced fluid friction in a large Reynolds number range effectively, and that suitable surface wettability for the reduction of the fluid friction depends on the flow velocity.
机译:在紫外线照射之前和之后,研究了涂覆有TiO _2的圆柱形玻璃管中的流体摩擦。 TiO _2的晶相为锐钛矿。其涂层厚度为约90nm。通过测量管道中的压力损失来评估摩擦阻力。在紫外线照射之前,压力损失在过渡范围内从层流逐渐变为湍流,雷诺数约为3,300。但是,紫外线照射后的压力损失保持层流,直到雷诺数为6,000。摩擦阻力的减小率随着流速的增加而增加。颗粒图像测速分析表明,通过抑制玻璃管壁周围的不稳定流动,可以减少流体摩擦。这些结果表明,高亲水性的TiO _2表面有效地在大的雷诺数范围内有效地减小了流体摩擦,并且用于减小流体摩擦的合适的表面润湿性取决于流速。

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