超声波气泡清洗机作为可持续解决方案

IF 1.8 Q3 MECHANICS Fluids Pub Date : 2023-10-28 DOI:10.3390/fluids8110291
Justin Howell, Emerson Ham, Sunghwan Jung
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引用次数: 0

摘要

我们的目标是开发一种地板清洁设计,通过利用振荡气泡结合环境压力波来清洁各种表面。先前在实验室环境中对这种方法的研究已经证明了它的有效性,但实际应用,特别是在现实世界的条件下,如污垢表面,仍然很大程度上没有被探索。我们的研究结果表明,除了带有重质量底部换能器的配置外,所有测试配置的清洁性能都达到了大约60-70%。虽然在误差范围内,但观察到微气泡的引入对清洁性能有轻微的改善。特别值得注意的是,在配置有水袋的情况下,用水量大幅减少,从280毫升减少到仅仅3毫升,这标志着朝着更环保的可持续清洁实践迈出了重要的一步,比如减少了用水量。这项研究为现实世界的清洁应用提供了启示,承诺了一种环保和高效的清洁替代方案,可以减少水的使用,处理各种材料而不会造成损害。
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Ultrasonic Bubble Cleaner as a Sustainable Solution
We aim to develop a floor-cleaning design by exploiting oscillating bubbles combined with ambient pressure waves to clean various surfaces. Previous studies of this method in lab settings have proven its efficacy, but practical applications, especially concerning real-world conditions like dirt surfaces, remain largely unprobed. Our findings indicate that, excluding a configuration with a heavy mass bottom transducer, all tested configurations achieved approximately 60–70% cleaning performance. A slight improvement in cleaning performance was observed with the introduction of microbubbles, although it was within the error margin. Particularly noteworthy is the substantial reduction in water consumption in configurations with a water pocket, decreasing from 280 mL to a mere 3 mL, marking a significant step toward more environmentally sustainable cleaning practices, such as reduced water usage. This research provides implications for real-world cleaning applications, promising an eco-friendly and efficient cleaning alternative that reduces water usage and handles a variety of materials without causing damage.
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来源期刊
Fluids
Fluids Engineering-Mechanical Engineering
CiteScore
3.40
自引率
10.50%
发文量
326
审稿时长
12 weeks
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