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Wave energy resource assessment along the Algerian coast based on 39-year wave hindcast

机译:基于39年的Wave Hindcast沿着阿尔及利亚海岸沿着阿尔及利亚海岸的波动能源评估

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摘要

This study investigates a long-term assessment of the wave energy resource propagated along the Algerian basin, based on a 39-year wave hindcast. The wave energy hindcast dataset was developed using the Simulating WAve Nearshore (SWAN) model, calibrated and validated [1] against wave measurements performed on the Algerian coast. A detailed spatial and local analysis was performed following the hindcast results. We have determined several parameters including; hourly, monthly, seasonal and annual variations of wave energy resources, the probability of occurrence distribution for different wave power ranges with different directions, the probability of calm sea states, the wave energy development index (WEDI) and the total annual wave energy and their distribution as a function of significant wave height and energy period. All these results enabled a very important benchmark for decision making regarding the future implementation and design of wave energy converters (WECs) and other offshore structures in the Algerian basin. Our findings have shown that the Algerian coasts are characterized by a considerable wave energy potential with a large hotspot area in the eastern coasts. Thus, we have recorded a significant variability in the wave energy characteristics available in each zone along the Algerian coast. The western zone was characterized by an average energy of similar to 7.5 kW/m with a low monthly and seasonal variation (1.2), the central zone was characterized by a significant total annual wave energy of 63 MWh/m/year and a considerable WEDI of 0.019, and the eastern Algerian coast was characterized by one of the highest energy potential in the Mediterranean basin with a total annual energy exceeding 100 MWh/m for less than 15 km from the coast and a calm sea state probability lower than 18%. Thus, it has been concluded that since 1995, wave energy resources have tended to increase further. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本研究根据A 39岁的波形Hindcast调查了沿着阿尔及利亚盆地传播的波能源的长期评估。使用模拟波浪近岸(SWAN)型号,校准和验证[1]开发了波能Hindcast数据集,对阿尔及利亚海岸进行的波测量进行了校准和验证的[1]。在HindCast结果后进行了详细的空间和局部分析。我们已经确定了几个参数,包括;每小时,月度,季节性和波浪能源的年度变化,不同波力的发生分布概率,不同方向,平静的海区,波能源开发指数(WEDI)和总年度波动能量及其分布作为显着波浪高度和能量期的函数。所有这些结果都是在阿尔及利亚盆地中的未来实施和设计的决策和设计的决策中,所有这些结果都是一个非常重要的基准。我们的研究结果表明,阿尔及利亚海岸的特点是具有东海岸的大型热点区域的相当大的波动能源。因此,我们在阿尔及利亚海岸的每个区域中获得的波能量特性进行了显着的变化。西方区的特点是平均能量与每月低7.5千瓦/米的平均能量(<1.2),中央区的特征在于63米/米/年的显着总年度波浪能量和相当大的Wedi为0.019,东阿尔及利亚海岸的特点是地中海盆地中最高能源潜力之一,总年度能源超过100米,距离海岸不到15公里,平静的海区概率低于18% 。因此,已经得出结论,自1995年以来,波能源资源往往进一步增加。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Renewable energy》 |2020年第6期|840-860|共21页
  • 作者单位

    Ecole Natl Super Sci Mer & Amenagement Littoral E Dept Environm & Amenagement Littoral Algiers Algeria;

    Bursa Uludag Univ Dept Civil Engn Gorukle Campus Bursa Turkey;

    Univ Sci & Technol Houari Boumedien USTHB Lab Oceanog Biol & Environm Marin Algiers Algeria;

    Ecole Natl Super Sci Mer & Amenagement Littoral E Dept Environm & Amenagement Littoral Algiers Algeria;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Wave energy; Wave power; Variability; WEDI; Hotspots; Algerian basin;

    机译:波能量;波力;变异性;WEDI;热点;阿尔及利亚盆地;

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