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A review of wave energy estimates for nearshore shelf waters off Australia

机译:澳大利亚近海陆架水域波浪能估计值的回顾

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摘要

Australia is recognized as one of the most promising region in the world to harvest wave energy. In order to harness such energy it is required to perform an assessment of the available resources as a pre-requisite to accurately select and characterize sustained nearshore optimum sites of wave energy concentration called 'hotspots'. Such regions typically offer greater economic potential for sitting wave energy conversion facilities since potential trade-offs between benefits of harvested wave energy and costs of bringing energy ashore are more profitable. This article is a review of wave energy predictions performed for nearshore shelf waters off Australia. Publicly available estimates of wave energy resource are reported from the literature, providing important descriptions of nearshore wave energy resources along Australia's margin. The states of Tasmania, Victoria, Western Australia and South Australia are endowed with relatively high levels of annual average wave power, in excess of approximately 30 kW m-1 along most of the exposed coasts. Coastal and nearshore wave energy resources are found significant and fairly sustained throughout the year for most of southern Australian states, with the highest mean wave energy power observed during spring and winter. These predictions mostly derived from numerical wave models revealed averaged discrepancies of approximately 20-30% when compared to waverider buoy records. The level of accuracy of wave hindcast data used as boundary conditions (model input) and its suitability to describe Australia's wave climate are found to be major reasons for that disparity. The densely populated coasts of New South Wales and Queensland are also found to be potential sites for wave energy harvesting, however, they have not yet been assessed for wave energy resources in nearshore shelf waters using a high spatial resolution wave transformation model. Lastly, using currently available WECs and Australian resource data the levelised cost of electricity (LCOE) of wave energy in the Australian southern coast has been calculated to be as low as ~100 $/MWh and the capacity factor as high as ~54%.
机译:澳大利亚被公认为世界上最有前途的海浪能源收集地区之一。为了利用这种能量,有必要对可用资源进行评估,以此作为准确选择和表征波浪能集中的持续近海最佳地点(称为“热点”)的先决条件。这样的地区通常为坐波能转换设施提供更大的经济潜力,因为在收获的波能的收益与将能源上岸的成本之间进行潜在的权衡会更有利可图。本文是对澳大利亚以外近海陆架水域进行的波能预测的综述。文献报道了可公开获得的波浪能资源估算值,提供了澳大利亚沿岸近岸波浪能资源的重要描述。塔斯马尼亚州,维多利亚州,西澳大利亚州和南澳大利亚州被赋予相对较高的年平均波浪功率,在大部分裸露的沿海地区,其年平均波浪功率超过30 kW m-1。在澳大利亚南部大部分州,全年发现沿海和近岸波浪能源资源丰富且相当可持续,在春季和冬季观测到的平均波浪能源功率最高。这些预测主要来自数值波浪模型,与乘波体浮标记录相比,平均差异约为20-30%。人们发现,作为边界条件(模型输入)的海浪后预报数据的准确性水平及其对描述澳大利亚海浪气候的适用性是造成这种差异的主要原因。还发现新南威尔士州和昆士兰州人口稠密的海岸是波浪能收集的潜在地点,但是,尚未使用高空间分辨率波浪转换模型对它们进行近海陆架水域波浪能资源的评估。最后,使用当前可用的WEC和澳大利亚资源数据,已计算出澳大利亚南部海岸波浪能的平均电费(LCOE)低至〜100 $ / MWh,容量系数高达〜54%。

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