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Algal treatment system based on ultrasonic vibration principle and water nest principle for mechanical ships

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DOI: 10.23977/jeeem.2024.070110 | Downloads: 0 | Views: 57

Author(s)

Yangkai Che 1, Shang Li 1

Affiliation(s)

1 School of Mechanical and Electrical Engineering, Wuhan University of Technology, Wuhan, China

Corresponding Author

Yangkai Che

ABSTRACT

With the development of automatic control technology, machine control has gradually replaced the complex and cumbersome manual control mode. Given the current situation in the aquaculture industry where high-temperature weather leads to algae overgrowth, damaging lake ecology, depleting oxygen in the water, and causing a large number of aquatic organisms to die, there is a need for the design of a mechanical ship for algae treatment. The device is designed with an underwater variable diameter telescopic rotary blade combined with ultrasonic vibration, a screw slide table structure, a new crank rocker structure, and a variety of sensors. The device also incorporates OPENCV's visual recognition system to achieve automatic harvesting of algae. This integration significantly enhances the efficiency of algae removal.

KEYWORDS

Algae treatment, OpenCV Vision, Ultrasonic vibration, Water Nest Principle

CITE THIS PAPER

Yangkai Che, Shang Li, Algal treatment system based on ultrasonic vibration principle and water nest principle for mechanical ships. Journal of Electrotechnology, Electrical Engineering and Management (2024) Vol. 7: 70-83. DOI: http://dx.doi.org/10.23977/jeeem.2024.070110.

REFERENCES

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