The Measurements of Ultrasonic Cavitation Based on the Image Processing
Chang Ping Zhu, Jing Liu, Chang Wei Liu, Qing Bang Han, Bo Huang, Ming Lei Shan, Yi Tang, Chunsheng Ni
Abstract
Chang Ping Zhu, Jing Liu, Chang Wei Liu, Qing Bang Han, Bo Huang, Ming Lei Shan, Yi Tang, Chunsheng Ni
Abstract
Ultrasonic intensity has a great influence on the concentration of cavitation bubbles. Considering the characteristic of cavitation, in this paper, we propose a method of measuring the amount of cavitation bubbles to identify the change of cavitation intensity indirectly. First, acquires images of reaction liquid under the action of the certain power ultrasonic through machine vision technology; then, obtains micro bubbles quantity generated by ultrasonic cavitation; finally, establish the mathematical model between cavitation intensity and amount of cavitation bubbles to indirectly detect the change of ultrasonic cavitation intensity.
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Ultrasonic intensity has a great influence on the concentration of cavitation bubbles. Considering the characteristic of cavitation, in this paper, we propose a method of measuring the amount of cavitation bubbles to identify the change of cavitation intensity indirectly. First, acquires images of reaction liquid under the action of the certain power ultrasonic through machine vision technology; then, obtains micro bubbles quantity generated by ultrasonic cavitation; finally, establish the mathematical model between cavitation intensity and amount of cavitation bubbles to indirectly detect the change of ultrasonic cavitation intensity.
Key concepts: Cavitation, Ultrasonic sensor, Intensity (physics), Materials science, Acoustics, Ultrasound, Optics, Physics