Simulation and Experimental Study in the Process of Wave Energy Conversion

IF 2 3区 工程技术 Q2 ENGINEERING, MARINE Polish Maritime Research Pub Date : 2016-10-01 DOI:10.1515/pomr-2016-0056
Wei Zhang, Yanjun Liu
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Abstract

Abstract This article introduces the operating principle of the wave energy device and makes AMEsim simulated analysis in the influence of the amplitude and period of the wave on the output efficient. By using the result of the simulation to optimize design, the article puts forwards a kind of suitable control technology which based on the disclosed amplitude and period of the wave to control the check valve, invoking the motor in different levels of efficiency. This kind of technology aims to solve the problem which includes low efficiency and high start wave of the wave energy device. The result is verified by the physical experiment, which lays the foundation for the implementation of marine engineering. The established methods of simulation model and analysis results are expected to be useful to designing and manufacturing of wave energy converter.
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波浪能量转换过程的模拟与实验研究
摘要本文介绍了波浪能装置的工作原理,并利用AMEsim仿真分析了波浪振幅和周期对输出效率的影响。本文利用仿真结果进行优化设计,提出了一种适合的控制技术,即根据波形的公开幅度和周期来控制止回阀,使电机处于不同的效率水平。该技术旨在解决波浪能装置效率低、启动波高的问题。通过物理实验验证了结果,为海洋工程的实施奠定了基础。所建立的仿真模型方法和分析结果有望为波浪能转换器的设计和制造提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Polish Maritime Research
Polish Maritime Research 工程技术-工程:海洋
CiteScore
3.70
自引率
45.00%
发文量
20
审稿时长
>12 weeks
期刊介绍: The scope of the journal covers selected issues related to all phases of product lifecycle and corresponding technologies for offshore floating and fixed structures and their components. All researchers are invited to submit their original papers for peer review and publications related to methods of the design; production and manufacturing; maintenance and operational processes of such technical items as: all types of vessels and their equipment, fixed and floating offshore units and their components, autonomous underwater vehicle (AUV) and remotely operated vehicle (ROV). We welcome submissions from these fields in the following technical topics: ship hydrodynamics: buoyancy and stability; ship resistance and propulsion, etc., structural integrity of ship and offshore unit structures: materials; welding; fatigue and fracture, etc., marine equipment: ship and offshore unit power plants: overboarding equipment; etc.
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