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首页> 外文期刊>Journal of Ocean Engineering and Science >Determination of the right wave by empirical statistics: The wave energy resource assessment and the investigation of existing marine and coastal potential compatibility
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Determination of the right wave by empirical statistics: The wave energy resource assessment and the investigation of existing marine and coastal potential compatibility

机译:通过经验统计确定合适的波浪:波浪能资源评估以及现有海洋和沿海潜力兼容性研究

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In competition with other resources, ocean waves provide abundant supply of clean, safe, and reliable energy, but this source needs to be made an economical source for natural energy harvest. For this purpose, a wave energy conversion device is developed through various mechanisms by using ocean fluctuations that affect the ecosystems. The study was developed for the user to reduce the need for profitability of competitive balance and to support decision-makers who govern the equations for identifying locations for wave energy conversion facilities. Our model of wave energy harvesting is based on the analysis of the wave energy facility to quantify the net present value (NPV) of capital investment and evaluation. The proposed model has a local, regional, and flexible framework that can be applied even to the global scale for the wave energy conversion projects. The proposed model can be applied to the ongoing marine spatial planning. Specifically, the applications and ecological characteristics with an existing data collected by laboratory experiments and filed investigations, and the work of the various studies of the quantitative analysis of the compatibility of the commercial fishery data analysis spatial overlap. According to the empirical statistics, we found that the waves of the ocean around the west of Taiwan Island, had a great potential for high harvest, and offshore wave energy gradually increased. However, it comes to have an area of high economic potential whilst taking advantage of wave energy equipment to support the acquisition of a number of different coastal energy, the cost of the landing point of the submarine cable. The NPV is maximized if the conflict of use agreement is in place in the existing sea area. It is possible to build a wave energy facility in order to minimize the maximum composite wave energy and other economic uses. The high possibility of building the facility benefits the goal of this research. By mapping the wave energy, the governing equations of the study can assist decision-makers to use NPV to explore an alternative location for wave energy conversion facilities in order to reap the maximum returns. It is expected that the high potential areas would not be exploited in the race of capturing the existing marine space.
机译:在与其他资源的竞争中,海浪提供了大量清洁,安全和可靠的能源,但是必须将此资源用作自然能源收集的经济来源。为此,利用影响生态系统的海洋波动,通过各种机制开发了波浪能转换装置。这项研究是为用户开发的,目的是减少对竞争性平衡盈利能力的需求,并支持决策者管理方程式,以识别波浪能转换设施的位置。我们的波浪能收集模型基于波浪能设施的分析,以量化资本投资和评估的净现值(NPV)。所提出的模型具有本地,区域性和灵活的框架,甚至可以应用于波浪能转换项目的全球规模。所提出的模型可以应用于正在进行的海洋空间规划。具体来说,其应用和生态特征与现有的通过实验室实验和现场调查收集的数据,以及各种研究工作的定量分析之间的兼容性,对商业渔业数据分析的空间重叠。根据经验统计,我们发现台湾岛西侧的海浪具有很高的收成潜力,海上波浪能逐渐增加。然而,它在利用波能设备支持获取许多不同的沿海能源(海底电缆着陆点的成本)的同时,具有很高的经济潜力。如果在现有海域中存在使用冲突协议,则NPV最大化。可以建造波浪能设施,以最大程度地减少最大复合波浪能和其他经济用途。建造该设施的可能性很高,有利于该研究的目标。通过绘制波浪能,该研究的控制方程式可以帮助决策者使用NPV来探索波浪能转换设施的替代位置,以获取最大回报。预计在捕获现有海洋空间的竞赛中不会开发高潜力区域。

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