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Effect of Step Height On the Aeration Efficiency of Cascade Aerator System Using Particle Image Velocimetry

机译:步高对粒子图像速度级粒子曝气机系统曝气效率的影响

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Aeration is an important parameter in water filtration system as it allows the transfer of oxygen to water through turbulence effect which subsequently increases air entrainment in the water. For water treatment application, aeration efficiency is measured to ensure continuous re-oxygenation of the unfiltered water. Aside from aeration, this paper also studies the flow patterns through the use of particle image velocimetry (PIV) setup. Through the use of real scale down physical model laboratory study is performed using PIV to obtain the velocity profile. These velocity profiles will then be used to calculate the aeration efficiency of the water in a cascade aerator system. Based on the findings, the aeration efficiency obtained from the PIV experiment has a maximum value at the lowest point of the cascade aerator system with a value of 0.0139 due to increase in mass flow rate as it moves through the steps with velocity of 0.418 m/s. Therefore, in the design of a cascade aerator system, it is advisable to increase the number of steps since it will increase the aeration efficiency of the system.
机译:曝气是水过滤系统中的重要参数,因为它允许通过随后增加水中的空气夹带的湍流效应将氧气转移到水中。对于水处理应用,测量曝气效率以确保未滤波的水的连续重新氧合。除了曝气,本文还通过使用粒子图像速度(PIV)设置来研究流动模式。通过使用实际缩小的物理模型实验室研究,使用PIV进行测量速度曲线。然后将使用这些速度配置文件来计算级联曝气器系统中的水的通气效率。基于发现,从PIV实验获得的曝气效率在级联曝气器系统的最低点处具有最大值,其值为0.0139由于质量流量增加,因为它通过速度为0.418米/ s。因此,在级联曝气器系统的设计中,建议增加其步骤的数量,因为它将提高系统的通气效率。

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