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首页> 外文期刊>The Canadian Journal of Chemical Engineering >INFLUENCE OF A PERPENDICULAR LIQUID FLOW ON A CLEANING PROCESS USING 20KHZ ULTRASOUND: CHARACTERIZATION OF THE AGITATION AT VICINITY OF THE SURFACE OPPOSITE TO THE TRANSDUCER
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INFLUENCE OF A PERPENDICULAR LIQUID FLOW ON A CLEANING PROCESS USING 20KHZ ULTRASOUND: CHARACTERIZATION OF THE AGITATION AT VICINITY OF THE SURFACE OPPOSITE TO THE TRANSDUCER

机译:垂直液体流动对使用20KHZ超声的清洗过程的影响:在对着换能器的表面附近搅拌的特性

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摘要

This work is part of a project consisting of the development of an automatic cleaning station for the immersed part of boats. This self-service station combines ultrasound for washing with a specific water treatment. Since, in this case, displacement of the transducers plus suction of the dirt removed induce circulation, we need to measure the ultrasound activity which reaches the surface despite the disruptions. The goal of this work is to quantify this ultrasound activity. For this purpose, a specific lab-scale equipment was designed and built. Two methods were implemented for quantification of the ultrasound activity: Particle Image Velocimetry and electrochemical mass transfer measurements. From electrochemical measurements, a parietal velocity was calculated and found to be consistent with velocities obtained from both flow rate and PIV measurements in silent conditions. Moreover, it was found that, even in the presence of a liquid flow perpendicular to the main direction of propagation of ultrasound, contribution of ultrasound to the agitation on the opposite wall remained noticeable. Nevertheless, results showed that the main activity was concentrated in the area close to the transducer. Thus, to maximize the cleaning process, small distances must be maintained between the cleaning tool and the boat hull.
机译:这项工作是一个项目的一部分,该项目包括为船的浸没部分开发自动清洁站。这个自助服务站结合了超声波清洗和特殊的水处理。由于在这种情况下,换能器的位移加上去除的污垢的抽吸会引起循环,因此我们需要测量尽管受到干扰,但到达表面的超声活动。这项工作的目的是量化这种超声活动。为此目的,设计并制造了特定的实验室规模的设备。实施了两种方法来量化超声活性:粒子图像测速和电化学传质测量。根据电化学测量,计算壁速度,发现其与在静默条件下从流速和PIV测量获得的速度一致。此外,发现即使在垂直于超声波的主要传播方向的液体流的存在下,超声波对相对壁上的搅动的贡献仍然是显着的。尽管如此,结果显示主要活动集中在靠近换能器的区域。因此,为了使清洁过程最大化,清洁工具与船体之间必须保持较小的距离。

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