带有60°扭流挡板的文丘里微泡发生器的性能

Garc í a Mart í n, Fatma Roshanti, S. Deddy, Purnomo Sidhi, S. Kamal
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摘要

由于其独特的物理性质,微气泡在废物处理、水产养殖和食品加工等领域受到了广泛的关注。对高效、低功耗的微泡发电机的需求已成为当今的挑战。旋流已被广泛证明可以改善气泡的形成。许多研究人员已经开发出产生旋流和增强湍流流体流动的设计。在这项研究中,我们提出了一个涡流文丘里微泡发生器与60◦扭曲挡板鳍在进口部分。利用气泡大小分布、水力功率(L w)和气泡产生效率(η b)等参数对旋流文丘里型微泡发生器的性能进行了实验测试。在672 L水的透明试验池中安装微泡发生器。采用高速摄像机对流动特性进行了可视化观察。水和气的流速分别在40 ~ 60lpm和0.1 ~ 0.5 lpm之间变化。利用MATLAB R2022b对数据进行分析,采用技术图像处理方法。结果表明,气泡以100-300µm居多。水流量(Q L)的增加可使水力功率增加22 ~ 27 W,而气体流量(Q G)的增加只会使水力功率增加1 W。随着水流量的增加,气泡产生效率降低。在60lpm和0.1 lpm时,气泡产生效率最低,为0.008%。综上所述,旋流文丘里型微泡发生器是一种产生微泡的有效装置。
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The Performance of Venturi Microbubble Generator Type with a 60° Twisted Baffles
: Due to their unique physical properties, microbubbles have received a lot of attention in waste treatment, aquaculture, and food processing. The demand for high-efficient and low power consumption microbubble generators has become a challenge today. Swirling flow has been widely proven to improve bubble formation. Numerous researchers have developed designs to produce swirl flow and strengthen the turbulence fluid flow. In this study, we present a swirl venturi microbubble generator with a 60 ◦ twisted baffle fin on the inlet section. The performance of the microbubble generator swirl venturi type was tested experimentally using parameters such as the distribution of bubble size, hydraulic power (L w ), and bubble-generating efficiency ( η b ). A microbubble generator was installed in the transparent test pool with 672 L of water. A high-speed video camera was employed to visualize the flow behavior. The water and gas flow rates varied between 40 and 60 lpm and 0.1 and 0.5 lpm, respectively. The data were analyzed by MATLAB R2022b with the technique image processing method. The results showed that majority bubbles 100–300 µ m were generated. An increased water flow rate (Q L ) will increase the hydraulic power by 22–27 W, while an enlargement of the gas flow rate (Q G ) would only enlarge it by 1 W. As the water flow rate increases, bubble-generating efficiency decreases. The lowest bubble-generating efficiency of 0.008% occurs at a Q L 60 lpm and Q G of 0.1 lpm. In conclusion, we can conclude that the microbubble generator swirl venturi type is an efficient device for generating microbubbles.
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