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The cumulative impact of tidal stream turbine arrays on sediment transport in the Pentland Firth

机译:潮汐涡轮机阵列对彭特兰峡湾泥沙输运的累积影响

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This contribution investigates the impact of the deployment of tidal stream turbine arrays on sediment dynamics and seabed morphology in the Pentland Firth, Scotland. The Pentland Firth is arguably the premier tidal stream site in the world and engineering developments are progressing rapidly. Therefore understanding and minimising impacts is vital to ensure the successful development of this nascent industry. Here a 3 dimensional coupled hydrodynamic and sediment transport numerical model is used to investigate the impact on sediment transport and morphodynamics of tidal stream arrays. The aim of the work presented here is twofold: firstly to provide prediction of the changes caused by multiple tidal stream turbine array developments to some of the unique sandy seabed environments in the Pentland Firth and secondly as a case study to determine the relationship between impacts of individual tidal stream farms and cumulative impacts of multiple farms. Due to connectivity in tidal flow it has been hypothesized that the cumulative impact of multiple arrays on sediment dynamics might be non-linear. This work suggests that, for the Pentland Firth, this is not the case: the cumulative impact of the 4 currently proposed arrays in the area is equal to the sum of the impacts of the individual arrays. Additionally, array implementation only has minimal effect on the baseline morphodynamics of the large sandbanks in the region, smaller more local sandbanks were not considered. These two results are extremely positive for tidal stream developers in the region since it removes the burden of assessing cumulative impact from individual developers and suggests that impacts to sub-sea morphodynamics is insignificant and hence is unlikely to be an impediment to development in the Pentland Firth with the currently proposed levels of extraction. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项研究调查了苏格兰彭特兰湾的潮流涡轮机阵列的部署对沉积物动力学和海床形态的影响。彭特兰峡湾(Pentland Firth)可以说是世界上最主要的潮汐流场,并且工程发展正在迅速发展。因此,了解并最大程度地减少影响对于确保这个新兴行业的成功发展至关重要。在这里,使用三维耦合的水动力和泥沙输送数值模型来研究潮汐流对泥沙输送和形态动力学的影响。这里提出的工作的目的是双重的:首先,对彭特兰峡湾某些独特的沙质海底环境中的多台潮汐流涡轮机阵列的发展所引起的变化进行预测;其次,通过案例研究来确定影响单个潮汐流场以及多个场的累积影响。由于潮汐流的连通性,已经假设多个阵列对沉积物动力学的累积影响可能是非线性的。这项工作表明,对于彭特兰峡湾而言,情况并非如此:目前在该地区提出的4个阵列的累积影响等于各个阵列的影响之和。此外,阵列实施对区域内大型沙洲的基线形态动力学影响最小,未考虑较小的局部沙洲。这两个结果对于该地区的潮汐流开发者来说是极为积极的,因为它消除了评估单个开发者的累积影响的负担,并表明对海底形态动力学的影响微不足道,因此不太可能成为Pentland Firth的发展障碍。目前建议的提取水平。 (C)2015 Elsevier Ltd.保留所有权利。

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