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Characterizing the near shore wave energy resource on the west coast of Vancouver Island, Canada

机译:表征加拿大温哥华岛西海岸的近岸波能源

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Global wave energy inventories have shown that the west coast of Canada possesses one of the most energetic wave climates in the world, with average annual wave energy transports of 40-50 kW/m occurring at the continental shelf. With this energetic climate, there is an opportunity to generate significant quantities of electricity from this renewable source through the use of wave energy conversion (WEC) technologies. To help evaluate the feasibility of deploying wave energy conversion technologies along the west coast of Vancouver Island, a detailed Simulating WAves Nearshore (SWAN) model was developed to assess the wave resource. The SWAN model hindcasted wave conditions along the west coast over the 2005-2012 period, at a 3 h time resolution. Detailed sensitivity studies within this report illustrate that the Fleet Numerical Meteorology and Oceanography Centre's (FNMOC) WaveWatch 3 results exhibited superior model performance when used as wave input boundary conditions. The corresponding Coupled Ocean Atmosphere Mesoscale Prediction System (COAMPS) wind fields were used as non-stationary wind forcing functions within the computational domain. Yearly and monthly mean variations of spectral and parametric wave characteristics for two reference locations were plotted to indicate both the spatial and temporal variability of the wave climate. The mean annual wave energy transport for Amphitrite Bank was calculated to be 34.5 kW/m, while the shallower second location featured 27.8 kW/m just 500 m from shore. Wave energy resources of this magnitude are not common globally and, as a consequence, signify that the west coast of Vancouver Island may be an excellent candidate location for future wave energy development.
机译:全球波浪能清单显示,加拿大西海岸拥有世界上最活跃的波浪气候之一,在大陆架上平均每年发生40-50 kW / m的波浪能传输。在这种充满活力的气候下,有机会通过使用波浪能转换(WEC)技术从这种可再生能源中产生大量电力。为了帮助评估在温哥华岛西海岸部署波浪能转换技术的可行性,开发了详细的模拟波浪近岸(SWAN)模型来评估波浪资源。 SWAN模型以3小时的时间分辨率对2005-2012年期间西海岸的海浪条件进行了后预报。在此报告中进行的详细灵敏度研究表明,舰队数值气象和海洋学中心(FNMOC)的WaveWatch 3结果在用作波浪输入边界条件时表现出出众的模型性能。相应的耦合海洋大气中尺度预报系统(COAMPS)风场被用作计算域内的非平稳风强迫函数。绘制了两个参考位置的频谱和参数波特征的年均和月均变化,以表明海浪气候的时空变化。据计算,Amphitrite Bank的年平均波浪能传输量为34.5 kW / m,而较浅的第二位置的位置为27.8 kW / m,距海岸仅500 m。这种规模的波浪能资源在全球范围内并不普遍,因此,表明温哥华岛西海岸可能是未来波浪能发展的极佳候选地。

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