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ANALYSIS OF WAVE ENERGY SOURCES IN THE NORTH ATLANTIC WATERS IN VIEW OF DESIGN CHALLENGES

机译:从设计挑战出发分析北大西洋水域的波能源

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This paper describes a wave energy analysis of North Atlantic waters and provides an overview of the available resources. The analysis was conducted using a scatter diagram data combined with wave statistics and empirical parameters given by wave height and periods. Such an overview is instrumental for modelling of wave energy sources, design of wave energy converter (WEC) devices and determination of locations of the devices. Previous survey of wave energy resources widely focused on determination of the reliability on installations of WECs. Though the renewable energy source that can be utilized from the waves is huge, the innovative work in design and development of WECs is insignificant and the available technologies still require further optimization. Furthermore, the wave potential of North Atlantic waters is not sufficiently studied and documented. Closer review of the literature also shows that wave energy conversion technology, compared with other conversion machines of renewable energy sources such as wind energy and solar energy, seems still immature and most of the research and development efforts in this direction are limited in scope. The design of energy converters is also highly dictated by the wave energy resource intensity distribution, which varies from North to South hemisphere. The immaturity of the technology can be attributed to several factors. Since there are a number of uncertainties on the accuracy of wave data, the design, location and installation of WECs face a number of challenges in terms of their service life, structural performance and topological configuration. As a result, collection and assessment of wave characteristics and the wave state conditions data serve as key inputs for development of robust, reliable, operable and affordable wave energy converters. The fact that a number of variables are involved in wave distribution characteristics and the extraction of wave power, treating these variables in the design process imposes immense challenges for the design optimization and hence the optimum energy conversion. The conversion machines are expected to extract as high wave energy as possible while their structural performance is ensured. The study reported in this paper is to analyse wave data over several years of return periods with a detailed validation for wave statistics and wave power. The analysis is intended to contribute in better understanding of the wave characteristics with influencing parameters that can serve as design optimization parameters. A method is proposed to conduct a survey and analysis of the available wave energy resources and the potential at cited locations. The paper concludes that wave energy data accuracy is the baseline for project scoping, coastal and offshore design, and environmental impact assessments.
机译:本文介绍了北大西洋水域的波浪能分析,并对可用资源进行了概述。使用散点图数据结合波统计数据和由波高和周期给出的经验参数进行分析。这样的概述对于波浪能源的建模,波浪能转换器(WEC)设备的设计以及设备位置的确定是有帮助的。以前对波浪能资源的调查主要集中在确定WEC安装的可靠性上。尽管可以利用海浪来利用的可再生能源巨大,但WEC的设计和开发方面的创新工作微不足道,可用技术仍需进一步优化。此外,对北大西洋水域的波浪势还没有进行充分的研究和记录。进一步的文献研究还表明,与其他可再生能源的转换机(例如风能和太阳能)相比,波浪能转换技术似乎还不成熟,并且在这一方向上的大部分研究和开发工作都受到了限制。能源转换器的设计也受到波浪能资源强度分布的高度支配,波浪能资源强度分布在北半球和南半球各不相同。该技术的不成熟可以归因于几个因素。由于波浪数据的准确性存在许多不确定性,因此,WEC的设计,位置和安装在使用寿命,结构性能和拓扑结构方面都面临许多挑战。结果,波浪特征和波浪状态条件数据的收集和评估成为开发坚固,可靠,可操作且价格合理的波浪能转换器的关键输入。在波的分布特性和波功率提取中涉及许多变量的事实,在设计过程中处理这些变量对设计优化提出了极大的挑战,因此也带来了最佳的能量转换。期望转换机在确保其结构性能的同时,尽可能地提取出高波能。本文报道的研究旨在分析海浪数据在数年的返回期内,并对海浪统计数据和海浪功率进行详细验证。该分析旨在通过可以用作设计优化参数的影响参数,更好地理解波浪特征。提出了一种方法来进行调查和分析可用波能资源和引用位置处的潜力。本文得出的结论是,波浪能数据的准确性是项目范围界定,沿海和近海设计以及环境影响评估的基准。

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