Research on Multi -mode Power Generation Devices based on Wave Energy

Authors

  • Chenxu Zhang
  • Yunfei Yang
  • Nan Yang
  • Song Gao
  • Ruizhong Wang

DOI:

https://doi.org/10.54097/ije.v3i1.10133

Keywords:

Wave Power Generation, Multi-mode, Piezoelectric Ceramics, Piezoelectric Effect

Abstract

This paper mainly studies a multi-mode power generation device based on wave energy, which is mainly composed of power generation device, energy storage device, monitoring device, through the use of electromagnetic machinery, piezoelectric ceramics, hydraulic system in a variety of ways to generate electricity, and then the energy storage device stable output, is a kind of power generation system will be converted into electrical energy device, to achieve high efficiency conversion of wave energy. Each part of the project is innovative and practical, which has high application value in ocean power generation. Compared with some traditional power generation devices, this device uses a new type of energy, ocean wave energy, which is a pollution-free, clean and renewable new energy. Wave energy has high flow density, huge reserves and wide distribution, which is the main direction of the development of ocean energy utilization in the future. It will make positive contributions to Marine construction, economic development and infrastructure construction of countries and regions along the Belt and Road.

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References

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Peng Wei, Tang Guiyu. The research progress of the power control of oscillating body wave energy installation [J]. Scientific and technological innovation and application, 2023, 13 (15): 89-92.

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Zheng Chongwei, Li Chongyin. Difficulties and countermeasures for the selection of new energy selection of the ocean-take wave energy as an example [J]. Journal of Harbin Engineering University, 2018,39 (02): 200-206.

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Published

26-06-2023

Issue

Section

Articles

How to Cite

Zhang, C., Yang, Y., Yang, N., Gao, S., & Wang, R. (2023). Research on Multi -mode Power Generation Devices based on Wave Energy. International Journal of Energy, 3(1), 21-23. https://doi.org/10.54097/ije.v3i1.10133