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Improving wind farm accessibility for operation & maintenance through a co-located wave farm: Influence of layout and wave climate

机译:通过位于同一地点的风电场提高风电场在运行和维护方面的可及性:布局和波浪气候的影响

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One of the challenges of offshore wind energy farms lies in their reduced availability relative to onshore facilities. In effect, with wave heights over 1.5 m impeding workboats access, sea conditions often cause delays to operation & maintenance tasks, and thereby impact on the availability for power production of the farm. The most immediate consequence is larger non-operational periods, which could translate into lower power production and, therefore, a reduction of their economic viability. By deploying wave energy converters along the periphery of the wind farm, wave height within the park can be reduced, and the accessibility for operation & maintenance tasks improved. The aim of this work is to analyse this synergy between wave and wind energy through the comparison of four case studies, and more specifically, to investigate how this synergy can be materialised under different conditions in terms of: (i) location (depth and distance from the coast), (ii) sea climate, and (iii) wind farm layout. It was found that the combination of wave and offshore wind energy results in enhanced accessibility for operation 8: maintenance tasks in all the cases considered, with accessibility values of up to 82%. (C) 2015 Elsevier Ltd. All rights reserved.
机译:海上风电场的挑战之一在于相对于陆上设施而言,其可用性降低。实际上,浪高超过1.5 m妨碍工作船进入,海况通常会导致操作和维护任务的延迟,从而影响农场发电的可用性。最直接的后果是更大的非运行时间,这可能会导致发电量降低,从而降低其经济生存能力。通过在风电场的外围部署波能转换器,可以降低公园内的波高,并改善操作和维护任务的可及性。这项工作的目的是通过比较四个案例研究来分析波浪能与风能之间的这种协同作用,更具体地说,是要研究在不同条件下如何在以下方面实现这种协同作用:(i)位置(深度和距离) (ii)海洋气候,以及(iii)风电场布局。结果发现,波浪能和海上风能的结合可以提高操作8的可访问性:在所有情况下,维护任务的可访问性值高达82%。 (C)2015 Elsevier Ltd.保留所有权利。

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