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两种直接波浪能转换系统性能的比较:阿基米德波浪摆和波能浮筒(英文)
引用本文:Jawad Faiz,M. Ebrahimi-Salari. 两种直接波浪能转换系统性能的比较:阿基米德波浪摆和波能浮筒(英文)[J]. 船舶与海洋工程学报, 2011, 10(4): 419-428. DOI: 10.1007/s11804-011-1087-9
作者姓名:Jawad Faiz  M. Ebrahimi-Salari
作者单位:School of Electrical and Computer Engineering, University of Tehran;Department of Electrical Engineering, Islamic Azad University, Najafabad Branch
基金项目:University of Tehran Research Grant
摘    要:Many wave energy conversion devices have not been well received. The main reasons are that they are too complicated and not economical. However, in the last two decades direct conversion systems have drawn the attention of researchers to their widely distributed energy source due to their simple structure and low cost. The most well-known direct conversion systems presently in use include the Archimedes Wave Swing (AWS) and Power Buoy (PB). In this paper, these two systems were simulated in the same conditions and their behaviors were studied in different wave conditions. In order to verify the simulations, results of the generator of the finite element computations were followed. An attempt was made to determine the merits and drawbacks of each method under different wave conditions by comparing the performance of the two systems. The wave conditions suitable for each system were specified.

关 键 词:AWS  PB  direct wave energy conversion  PM linear generator
收稿时间:2008-04-09

Comparison of the performance of two direct wave energy conversion systems: Archimedes wave swing and power buoy
Jawad Faiz,M. Ebrahimi-Salari. Comparison of the performance of two direct wave energy conversion systems: Archimedes wave swing and power buoy[J]. Journal of Marine Science and Application, 2011, 10(4): 419-428. DOI: 10.1007/s11804-011-1087-9
Authors:Jawad Faiz  M. Ebrahimi-Salari
Affiliation:Ebrahimi-Salari2 1. School of Electrical and Computer Engineering, University of Tehran, Tehran, Iran 2. Department of Electrical Engineering, Islamic Azad University, Najafabad Branch, Najafabad, Isfahan, Iran
Abstract:Many wave energy conversion devices have not been well received. The main reasons are that they are too complicated and not economical. However, in the last two decades direct conversion systems have drawn the attention of researchers to their widely distributed energy source due to their simple structure and low cost. The most well-known direct conversion systems presently in use include the Archimedes Wave Swing (AWS) and Power Buoy (PB). In this paper, these two systems were simulated in the same conditions and their behaviors were studied in different wave conditions. In order to verify the simulations, results of the generator of the finite element computations were followed. An attempt was made to determine the merits and drawbacks of each method under different wave conditions by comparing the performance of the two systems. The wave conditions suitable for each system were specified.
Keywords:
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