
Design and experiment of a magnetic lead screw for the point‐absorbing wave energy conversion system
Author(s) -
Zhao Aqiang,
Wu Weimin,
Jiang Jiacheng,
Zhu Lixun,
Lu Kaiyuan,
Blaabjerg Frede
Publication year - 2020
Publication title -
iet electric power applications
Language(s) - English
Resource type - Journals
ISSN - 1751-8679
DOI - 10.1049/iet-epa.2019.0486
Subject(s) - point (geometry) , energy transformation , energy (signal processing) , lead (geology) , physics , materials science , electrical engineering , engineering , mathematics , geology , thermodynamics , geometry , quantum mechanics , geomorphology
This study introduces a new structure of the magnetic lead screw (MLS) intended for wave energy conversion (WEC) applications. One of the key challenges in the application of MLS technology for wave energy lies in the manufacturing of its complicated ideal helix. Structural simplification and processing technology are quite essential in promoting the development of the magnet screw. This study proposes a new method for shaping the desired ideal helix in a simple way with parallelly magnetised magnets. This simple structure reduces manufacturing complexity while maintaining good force density. The magnets with parallel magnetisation are also easier and cheaper to manufacture than the magnets with radial magnetisation. A prototype is manufactured and tested in the laboratory. In addition, the electromagnetic performance of the new structure is evaluated as compared with the magnet screw with ideal helix using the three‐dimensional finite element analysis, verifying the advantages of the proposed structure.