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Green Energy and Networking. 7th EAI International Conference, GreeNets 2020, Harbin, China, June 27-28, 2020, Proceedings

Research Article

Ultrasonic Power Supply of Oil-Water Separation System

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  • @INPROCEEDINGS{10.1007/978-3-030-62483-5_7,
        author={AnHua Wang and DongDong Wan and HongKai Ding},
        title={Ultrasonic Power Supply of Oil-Water Separation System},
        proceedings={Green Energy and Networking. 7th EAI International Conference, GreeNets 2020, Harbin, China, June 27-28, 2020, Proceedings},
        proceedings_a={GREENETS},
        year={2020},
        month={11},
        keywords={Oil water separation Ultrasonic power Inverter technology Positive and negative pulse},
        doi={10.1007/978-3-030-62483-5_7}
    }
    
  • AnHua Wang
    DongDong Wan
    HongKai Ding
    Year: 2020
    Ultrasonic Power Supply of Oil-Water Separation System
    GREENETS
    Springer
    DOI: 10.1007/978-3-030-62483-5_7
AnHua Wang1,*, DongDong Wan1, HongKai Ding1
  • 1: Electronic and Information Engineering Institute, Heilongjiang University of Science and Technology
*Contact email: 3036361_cn@sina.com

Abstract

With the continuous development of oil field, the recovery and recovery of crude oil are gradually reduced, and the water content ratio of oil field production is higher and higher. The ultrasonic oil-water separation technology can improve this situation. The performance of ultrasonic power supply directly affects the reliability and economic benefit of oil-water separation system, which is an important part of the system. This paper introduces an ultrasonic power supply with high efficiency and strong stability. This power supply mainly adopts inverter technology to realize the continuous regulation of output voltage and working frequency. Matlab simulation experiment shows that the output voltage of H-bridge is positive and negative pulse waveform, and the output current is sine wave; reasonable setting of parameters can ensure that the output voltage amplitude is 0 V–00 V, and the frequency is 15 kHz–35 kHz, which meets the actual production demand. The results show that the ultrasonic power supply designed in this paper has good output characteristics and can provide energy to the transducer efficiently and reliably, which is of great significance to the practical application of the ultrasonic oil-water separation system.

Keywords
Oil water separation Ultrasonic power Inverter technology Positive and negative pulse
Published
2020-11-03
Appears in
SpringerLink
http://dx.doi.org/10.1007/978-3-030-62483-5_7
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